团队队伍

  • 史雪荣

    姓名:史雪荣  职称:副教授,研究生导师

    指导研究方向:材料物理与化学

    通讯地址:上海市松江区龙腾路333号

    电子邮箱:shixuerong@sues.edu.cn

    联系电话:021-00000000

    教育经历:

    2007/10–2009/10,德国Fritz-Haber Institut,物理化学(含:化学物理),访问博士生,  

    2005/9–2010/7,中国科公司山西煤炭化学研究所,物理化学(含:化学物理),博士

    工作经历:

    2016/7-至今,bv1946伟德官网,伟德国际bevictor1946

    2015/2-2016/5,奥地利因斯布鲁克大学,物理化学系,副研究员

    2010/10-2012/9,美国佐治亚理工公司,化学与生物分子工程系,博士后

    研究方向:

      新能源材料理性设计、制备与应用

    研究情况:

      主持国家自然科学基金1项、参与科技部重点研发课题1项、主持省部级科研项目2项。

    论文信息:

      发表包括Sci Adv.、Adv. Mater、Angwa Chem、ACS Catal、Appli Catal. B等SCI文章60余篇。ESI高被引1篇。邀请文章数篇。

    近三年代表作:

    [1] C. Liu, X.-R. Shi, K. Yue, P. Wang, K. Zhan, X. Wang, B.Y. Xia, Y. Yan, S Species-Evoked High-valence Ni2+δ of the Evolved β-Ni(OH)2 Electrode for Selective Oxidation of 5-hydroxymethylfurfural, Adv Mater. 35 (2023) 2211177. doi:https://doi.org/10.1002/adma.202211177.

    [2] C. Meng, G. Zhao, X.-R. Shi, Q. Nie, Y. Liu, Y. Lu, Electronic modulation of InNi3C0.5/Fe3O4 by support precursor toward efficient CO2 hydrogenation to methanol, Appl Catal B Environ. 316 (2022) 121699. doi:10.1016/j.apcatb.2022.121699.

    [3] X. Zhang, C. Sun, S. Xu, M. Huang, Y. Wen, X.-R. Shi, DFT-assisted rational design of CoMxP/CC (M = Fe, Mn, and Ni) as efficient electrocatalyst for wide pH range hydrogen evolution and oxygen evolution, Nano Res. 15 (2022) 8897–8907. doi:http://dx.doi.org/10.1007/s12274-022-4771-y.

    [4]Y. Yan, J.-Y. Zhang, X.-R. Shi, Y. Zhu, C. Xia, S. Zaman, X. Hu, X. Wang, B.Y. Xia, A Zeolitic-Imidazole Framework-Derived Trifunctional Electrocatalyst for Hydrazine Fuel Cells, ACS Nano. 15 (2021) 10286–10295. doi:10.1021/acsnano.1c02440.

    [5] C. Meng, G. Zhao, X.-R. Shi, P. Chen, Y. Liu, Y. Lu, Oxygen-deficient metal oxides supported nano-intermetallic InNi3C0.5 toward efficient CO2 hydrogenation to methanol, Sci Adv. 7 (2021) eabi6012. doi:10.1126/sciadv.abi6012.

    获奖信息:

    上海市浦江人才计划


  • 成效塔

    姓名:成效塔  职称:校聘副教授指导研究方向:材料加工工程,材料与化工

    通讯地址:bv1946伟德官网实训楼5318

    电子邮箱:chengxiaota93@163.com

    联系电话:19921295616


    教育经历:

    2016.09–2024.05   东华大学     纺织材料与纺织品设计专业   工学博士

    2012.09–2016.06   南通大学     非织造材料与工程专业      工学学士


    工作经历:

    2024.07–至今,bv1946伟德官网,伟德国际bevictor1946,讲师


    研究方向:

    陶瓷纳米纤维材料的结构设计、高效成型及高温隔热等应用


    研究情况:

    作为项目负责人主持上海市科委杨帆计划项目和上海市协同创新项目子项目,获中国纺织工业联合会2025年度自然科学奖一等奖。迄今已在Nat. Commun.Adv. Mater.ACS Nano等期刊发表论文19篇(其中IF>10: 10篇),申请发明专利3项,已获授权3项。

    论文信息:

    [1]Xiaota Cheng, Yi-Tao Liu, Yang Si*, Jianyong Yu, Bin Ding*, “Direct synthesis of highly stretchable ceramic nanofibrous aerogels via 3D reaction electrospinning”, Nat. Commun. 2022, 13, 2637.

    [2]Xiaota Cheng, Xinyi Chang, Xinxin Zhang, Jin Dai, Hao Fong, Jianyong Yu, Yi-Tao Liu*, Bin Ding*, “Way to a library of Ti-series oxide nanofiber sponges that are highly stretchable, compressible, and bendable”, Adv. Mater. 2024, 36, 2307690.

    [3]Xiaota Cheng, Xinyi Chang, Hao Fong, Jianyong Yu, Yi-Tao Liu*, Bin Ding*, “Advanced nanofabrication for elastic inorganic aerogels”, Nano Res. 2024, 17, 8842-8862.

    [4]Xiaota Cheng, Xinyi Chang, Yalong Liao, Kai Pan, Xinxin Zhang*, Hao Fong, Fei Wang*, Jianyong Yu, Yi-Tao Liu, Bin Ding, “Highly compressible and stretchable ceramic aerogels with nanofiber-nanosheet binary synergistic structure for thermal insulation in extreme environments”, Ceram. Int. 2024, 50, 7451-7457.

    [5]Xinyi Chang, Xiaota Cheng*, Xia Yin, Renchao Che, Jianyong Yu, Yi-Tao Liu*, Bin Ding*, Multimode Thermal Gating Based on Elastic Ceramic-Carbon Nanowhisker/Nanofiber Aerogels by Strain Engineering Strategy, ACS Nano2025, 19, 10421–10432

    [6]Xinxin Zhang, Xiaota Cheng, Yang Si*, Jianyong Yu, Bin Ding*, “All-ceramic and elastic aerogels with nanofibrous-granular binary synergistic structure for thermal superinsulation”, ACS Nano 2022, 16, 5487-5495.

    [7]Xinyi Chang, Xiaota Cheng, Hao Zhang, Wenjing Li, Lijuan He, Xia Yin, Xiaoyan Liu*, Jianyong Yu, Yi-Tao Liu*, Bin Ding, “Superelastic carbon aerogels: an emerging material for advanced thermal protection in extreme environments”, Adv. Funct. Mater. 2023, 33, 2215168.

    [8] Chang Xinyi, Yang Yunfei, Cheng Xiaota, Yin Xia*, Yu Jianyong, Liu Yi-Tao, Ding Bin*, Multiphase Symbiotic Engineered Elastic Ceramic-Carbon Aerogels with Advanced Thermal Protection in Extreme Oxidative Environments, Adv. Mater. 2024, 36, 2406055.

    [9] Lvye Dou, Xiaota Cheng, Xinxin Zhang, Yang Si*, Jianyong Yu and Bin Ding‍‍*, “Temperature-invariant superelastic, fatigue resistant, and binary-network structured silica nanofibrous aerogels for thermal superinsulation”, Journal of Materials Chemistry A 2020, 8, 7775-7783.

    [10] Xinyi Chang, Fan Wu, Xiaota Cheng, Hao Zhang, Lijuan He, Wenjing Li, Xia Yin, Jianyong Yu, Yi-Tao Liu and Bin Ding, “Multiscale interpenetrated/interconnected network design confers all-carbon aerogels with unprecedented thermomechanical properties for thermal insulation under extreme environments”, Advanced Materials 2023, 36, 2308519.


    专利著作:

    1. 一种制备陶瓷纤维气凝胶的静电驻极接收装置,ZL202111391721.6

    丁彬、徐臻、斯阳、成效塔、刘成、印霞、俞建勇

    授权日:202327

    1. 一种具有铰接结构的陶瓷纳米纤维气凝胶,ZL202111376340.0

    丁彬、徐臻、斯阳、成效塔、印霞、俞建勇

    授权日:202352

    1. 三轴纺丝超弹耐高温复合碳纳米纤维气凝胶及其制备方法,CN118685891A

    刘一涛、胡紫婷、成效塔、常新宜、丁彬、俞建勇

    授权日:2023911



  • 刘华磊

    姓名:刘华磊  职称:校聘副教授

    指导研究方向:材料加工工程(纺丝),材料与化工

    通讯地址:bv1946伟德官网实训楼5317

    电子邮箱:hualeiliu@sues.edu.cn

    联系电话:15922009219


    教育经历:

    2017.09–2024.03   东华大学        纺织材料与纺织品设计专业       工学博士

    2013.09–2017.06   天津工业大学     非织造材料与工程专业          工学学士

    2013.09–2017.06   天津工业大学      公共事业管理专业          管理学学士


    工作经历:

    2024.05–至今,bv1946伟德官网,伟德国际bevictor1946,讲师


    研究方向:

    陶瓷纳米纤维材料的结构设计、力学增强及其热管理、高温电绝缘等应用


    研究情况:

    作为项目负责人主持国家自然科学基金青年科学基金项目(C类)、上海市“晨光计划”项目。在Advanced MaterialsNature CommunicationsACS NanoNano Letters等期刊发表SCI论文10余篇(其中IF>10: 8篇),已获授权国家发明专利12项。


    论文信息:

    1. Hualei Liu, Xinxin Zhang, Yalong Liao, Jianyong Yu, Yi-Tao Liu*, and Bin Ding*, Building-Envelope-Inspired, Thermomechanically Robust All-Fiber Ceramic Meta-Aerogel for Temperature-Controlled Dominant Infrared Camouflage, Advanced Materials,2024, 36, 2313720. (Editor's Choice).

    2. Hualei Liu, Xiaodan Huo, Peili Zhao, Ruixiang Xu, Xinxin Zhang*, Jianyong Yu, Yi-Tao Liu, Bin Ding*, Confined Gelation Synthesis of Flexible Barium Aluminate Nanofibers as a High-performance Refractory Material, ACS Nano, 2024, 18, 29273−29281.

    3. Hualei Liu, Siyu Qiang, Fan Wu, Xiao-Dong Zhu, Xiaoyan Liu, Jianyong Yu, Yi-Tao Liu*, and Bin Ding*, Scalable Synthesis of Flexible Single-Atom Monolithic Catalysts for High-Efficiency, Durable CO Oxidation at Low Temperature, ACS Nano, 2023, 17, 19431−19440.

    4. Hualei Liu, Fan Wu*, Xiaoyan Liu, Jianyong Yu, Yi-Tao Liu, and Bin Ding*, Multiscale Synergetic Bandgap/Structure Engineering in Semiconductor Nanofibrous Aerogels for Enhanced Solar Evaporation, Nano Letters, 2023, 23, 1190711915.

    5. Hualei Liu, Xiaoyan Liu, Jianyong Yu, Yi-Tao Liu*, and Bin Ding*, Recent Progress in Electrospun Al2O3 Nanofibers: Component Design, Structure Regulation and Performance Optimization, Applied Materials Today, 2022, 29, 101675.

    6. Xiaodan Huo, Hualei Liu*, Peili Zhao, Shuyu Liu, Xia Yin*, Yi-Tao Liu, Jianyong Yu, and Bin Ding, Porous Ceramic Nanofibrous Sponges for Fluoride Ion Removal from Contaminated Water, ACS Applied Nano Materials, 2025, 8, 8407−8416.

    7. Hangyuan Guo, Hualei Liu*, Lingqiao Wei, Songchun Fang, Roman A. Surmenev, Yi-Tao Liu, Jianyong Yu, Bin Ding*, Elastic and Compressive Barium Aluminosilicate Nanofibrous Sponge for Thermal Insulation up to 1400 ℃, ACS Applied Nano Materials, 2025, 8, 9995−10003.

    8. Yameng Xiao, Hualei Liu*, Chen Sun, Xinran Han, Roman A. Surmenev, Xia Yin*, Yi-Tao Liu, Jianyong Yu, and Bin Ding, Construction of Lysine-Functionalized Flexible Porous Carbon Nanofiber Membrane for High-Efficiency Formaldehyde Adsorption, The Journal of the Textile Institute, 2025, 1−10.

    9. Zhen Xu, Hualei Liu, Fan Wu, Longdi Cheng, Jianyong Yu, Yi-Tao Liu*, and Bin Ding*, Inhibited Grain Growth Through Phase Transition Modulation Enables Excellent Mechanical Properties in Oxide Ceramic Nanofibers up to 1700°C, Advanced Materials, 2023, 35, 2305336.

    10. Siyu Qiang, Fan Wu, Hualei Liu, Sijuan Zeng, Shuyu Liu, Jin Dai, Xiaohua Zhang, Jianyong Yu, Yi-Tao Liu*, and Bin Ding*,Integration of High Strength, Flexibility, and Room-Temperature Plasticity in Ceramic Nanofibers, Nature Communications, 2025, 16, 3265.


    专利著作:

    1. 丁彬、刘华磊等,一种均匀供液的静电纺丝装置,ZL201911063395.9

    2. 丁彬、刘华磊等,一种静电纺丝纳米纤维膜用低损伤复合装置,ZL201911056660.0

    3. 丁彬、刘华磊等,一种无聚合物模板辅助的无机溶胶纺丝成型方法,ZL202111376339.8

    4. 刘一涛、石家军、刘华磊等,单原子原位负载非晶态氧化物陶瓷纳米纤维的制备方法,ZL202210415413.0

    5. 丁彬、郭竑宇、斯阳、刘华磊等,一种柔性高熵陶瓷纳米纤维及其无聚合物模板制备方法,ZL202111391725.4


  • 李文尧

    李文尧

    教授,研究生导师

    bv1946伟德官网,研究生院、G60科创走廊卓越工程师公司

    地址:上海市松江区龙腾路333号行政楼A114室

    电话:+86-021-67791198;E-mail:liwenyao@sues.edu.cn

    Researcher ID: N-2714-2014; ORCID: 0000-0003-3634-2021

    工作经历

    2025.01-至今,bv1946伟德官网,研究生院、G60科创走廊卓越工程师公司,教授

    2022.10-2024.12,bv1946伟德官网,伟德国际bevictor1946,教授

    2022.06-2022.09,bv1946伟德官网,伟德国际bevictor1946,教授、研究生导师

    2020.10-2022.05,bv1946伟德官网,伟德国际bevictor1946,副教授、研究生导师

    2019.10-2020.09,UniversityCollege London (2024QS世界排名第9),Department ofChemical Engineering,访问学者

    2016.12-2019.09,bv1946伟德官网,伟德国际bevictor1946,副教授、研究生导师

    2014.07-2016.11,bv1946伟德官网,伟德国际bevictor1946,讲师、研究生导师

    教育背景

    2009.09-2014.02,东华大学,伟德国际bevictor1946,材料物理与化学,博士(硕博连读)

    2005.09-2009.07,景德镇陶瓷大学,伟德国际bevictor1946,无机非金属材料,学士

    科研经历

    研究方向

    1.超级电容器

    2.Li/Na/Zn离子电池

    3.电化学催化

    4.生物组织工程

    研究成果

       致力于低维半导体纳米材料的制备、表征及应用研究,探索纳米材料在新能源器件以及生物组织工程等重要领域的应用。主持国家自然科学基金面上基金、青年基金、上海市科学技术委员会地方院校能力建设项目、上海市“东方英才”、上海市“晨光计划”、bv1946伟德官网“腾飞计划”等项目;目前已在Electrochemical Energy Reviews、AdvancedFunctional Materials、Nano Energy、Advanced Science和Journal ofMaterials Chemistry A等国际期刊上发表SCI论文130余篇,其中影响因子大于10.0的论文31篇,IF > 3.0的论文100余篇;通讯或第一作者SCI论文84篇,其中IF > 10.0论文17篇,IF > 3.0论文60篇,发表在AdvancedFunctional Materials的论文入选该期刊“Back Cover”,并在Journal ofMaterials Chemistry A、Chemical Communications等期刊发表“Top10 most read articles”以及多篇“封面文章”。所有论文自发表以来已被SCI引用6400余次,H-index为48;授权发明专利26项。

    学术兼职

    担任Frontiers in Chemistry期刊电化学方向副主编(Associate Editor, IF 3.8)

    Frontiersin Materials期刊Research Topic Editor (IF 2.6)

    担任英国皇家化学学会期刊Journal of Materials Chemistry A、Chemical Communications、CrystEngComm、RSC Advances;美国化学会期刊ACS Applied Materials & Interface、ACS SustainableChemistry & Engineering,英国物理学会(IOP)期刊Nanotechnology、爱思唯尔(Elsevier)期刊AppliedCatalysis B: Environmental、Journal of Power Sources、ChemicalEngineering Journal、Electrochimica Acta、Journal ofElectroanalytical Chemistry、 AppliedSurface Science、Journal of Alloys andCompounds、Materials Letters等SCI期刊审稿人、仲裁审稿人。

    科研项目

    1、上海市第六人民医院委托技术开发,(25)CL-008、适应尿道微环境的核壳结构响应性水凝胶微球材料的开发、2024/10/09-2025/10/08、在研、主持。(委办级)

    2、国家自然科学基金面上基金、62374107、水系锌离子超级电容器电解质体系的调控与储能机制研究、2024/01-2027/12、主持。(国家级)

    3、上海市第六人民医院委托技术开发,(23)CL-005、提升Wnt通路抑制亲水性功能化材料的开发、2022/11/04-2023/11/03、在研、主持。(委办级)

    4、上海市科学技术委员会地方院校能力建设项目,21010501700、基于锰基层状氧化物钠离子电池电极材料和电解液关键技术研究、2021/07-2024/06、结题、主持。(省部级)

    5、青年科研团队培育计划项目、QNTD202104、2021/06-2024/05、结题、主持。(委办级)

    6、国家自然科学基金青年科学基金、51602193、基于静电纺二氧化锰/碳纳米管复合纤维柔性薄膜电极的可控制备及超电容性能研究、2017/01-2019/12、结题、主持。(国家级)

    7、上海市“晨光计划”、16CG63、基于柔性衬底枝状金属硫化物纳米异质结的制备及在超级电容器中的应用、2017/01-2019/12、结题、主持。(省部级)

    8、华东理工大学超细材料制备与应用教育部重点实验室开放课题基金、WD1817002、金属硫化物纳米异质结的制备及在超级电容器中的应用、2017.10-2019.10、结题、主持。(委办级)

    9、“腾飞计划”人才计划项目、bv1946伟德官网人才行动计划、2017/07-2020/07、结题、主持。(委办级)

    10、上海高校青年教师培养资助计划、ZZGCD15037、钴酸镍基电极材料的制备及电化学性能研究、2016/01-2017/01、结题、主持。(省部级)

    11、企业委托、二氧化锰/活性炭纤维柔性超级电容器的研制、2015/06-2017/06、结题、主持。(企业横向)

    12、中央高校创新基金项目,12D10625、106-06-0019033、金属氧化物及其复合材料超级电容器的制备与性能、2011/10-2013/10、结题、主持。(国家级)

    荣誉奖励

    [1].2016年,入选上海市“晨光计划”人才计划

    [2].2017年7月,入选bv1946伟德官网“腾飞计划”人才计划

    [3].2018年7月,入选bv1946伟德官网“优秀青年教师”

    [4].2020年8月,入选“长宁青年创新英才”

    [5].2022年,荣获bv1946伟德官网“青年五四奖章”个人奖

    [6].2023年11月,入选上海市东方英才计划-青年项目人才计划

    [7].2023年12月,获得“中国金属学会冶金医学奖”二等奖

    [8].2024年1月,获得第三十五届上海市优秀发明选拔赛“优秀创新金奖”

    代表论文(*号代表通讯作者)

    Cover story:

       

    图形用户界面, 网站

描述已自动生成  

     

    超级电容器方向:

    1.Caiyu Ma, Longnian Tang, Haiyun Cheng,Zhuangnan Li, Wenyao Li* and Guanjie He*. Biochar forsupercapacitor electrodes: mechanisms in aqueous electrolytes, BatteryEnergy, 2024, 20230058. (IF= 9)

    2.Wenyao Li,Bingjie Zhang, Runjia Lin, SocMan Ho-Kimura, Guanjie He*, Xiying Zhou, JunqingHu* and Ivan P. Parkin*, ADendritic Nickel Cobalt Sulfide Nanostructure for Alkaline Battery Electrodes,Advanced Functional Materials, 2018, 28(23), 1705937.(IF= 18.5,Back Cover)

    3.Li Wenyao,Li Gao, Sun Jianqing, Zou Rujia, Xu Kaibing, Sun Yangang, Chen Zhigang, YangJianmao, Hu Junqing*, Hierarchical heterostructures of MnO2nanosheets or nanorods grown on Au-coated Co3O4 porousnanowalls for high-performance pseudocapacitance. Nanoscale,2013, 5(7), 2901-2908. (IF=5.8)

    4.Li Wenyao, Liu Qian, Sun Yangang, Sun Jianqing, Zou Rujia,Li Gao, Hu Xianghua, Song Guosheng, Ma Guanxiang, Yang Jianmao, Chen Zhigang,Hu Junqing*, MnO2 ultralong nanowires with better electricalconductivity and enhanced supercapacitor performances. Journal of Materials Chemistry, 2012, 22(30),14864-14867. (IF=10.7, 入选英国皇家化学会“Top 10 most read article”)

    5.Li Wenyao,Xu Kaibing, An Lei, Zou Rujia*, Jiang Feiran, Yang Jianmao, Chen Zhigang, HuJunqing*, Effect of temperature on the capacitance of ultrafine MnO2nanobelt supercapacitors, Journal of Materials Chemistry A, 2014,2(5), 1443-1447. (IF= 10.7)

    离子电池方向:

    1.Mengran Zhao, Wenjing Du, Xuan Wang, WenyaoLi,* Cheng Yang, and Yu Liu. Tri-Site Co-DopingNASICON-type Na0.97K0.03Ti1.95Al0.05(PO4)2.95(SiO4)0.05/C with Enhanced RatePerformance and Cycling Stability. Journal of Materials Science &Technology, 2025, accepted. (IF=11.2)

    2.Xuan Wang, Mengran Zhao, Wenjing Du,Chaomin Zhang, Wenyao Li,* Cheng Yang, and Yu Liu. Boostingultralong lifespan of Fe-based Prussian blue analogs cathode via element dopingand crystal water capture. Chemical Engineering Journal, 2025,508, 160997. (IF=13.3)

    3.Shuaishuai Li, Xudun Shen, Bowang Zhao,Longnian Tang, Yechen Qian, Wenyao Li*, Shijie Li. An improved N-N dimethylacetamide-based non-flammablemolecular crowding electrolyte using NaOTf for cobalt-based prussian blue//hardcarbon aqueous solution battery. Journal of Colloid and InterfaceScience, 2025, 678, 732-740. (IF=9.4)

    4.Qingbo Zhou, Linlin Wang*, Wenyao Li*,Kangning Zhao, Minmin Liu, Qian Wu, Yujie Yang, Guanjie He, Ivan P. Parkin,Paul R. Shearing, Dan J. L. Brett, Jiujun Zhang* and Xueliang Sun. SodiumSuperionic Conductors (NASICONs) as Cathode Materials for Sodium-Ion Batteries.ElectrochemicalEnergy Reviews, 2021, 4, 793-823 (IF=28.4)

    5.Qingbo Zhou, Linlin Wang*, WenyaoLi*,Suyuan Zeng, Kangning Zhao, Yujie Yang, Qian Wu, Minmin Liu, Qiu-An Huang,Jiujun Zhang*, and Xueliang Sun. Carbon-Decorated Na3V2(PO4)3as Ultralong Lifespan Cathodes for High-Energy-Density Symmetric Sodium-IonBatteries. ACS Applied Materials & Interfaces, 2021, 13(21),25036-25043 (IF=8.3)

    电化学催化方向:

    1.Liping Huang, WenyaoLi,* Xudun Shen, Chunyan Sun, Jin Yang,Xue-rong Shi* and Min Zeng*, Phosphorus-bridgedternary metal alloy encapsulated in few-layered nitrogen-doped graphene forhighly efficient electrocatalytic hydrogen evolution,Journal of Materials Chemistry A,2022, 10, 7111-7121. (IF= 10.7, Hot paper)

    2.Liping Huang, WenyaoLi*, Min Zeng*, Guanjie He, Paul R.Shearing, Ivan P. Parkin and Dan J. L. Brett*. Metal-Nitrogen-DopedCarbon Single-Atom Electrocatalysts for CO2 Electroreduction, CompositesPart B: Engineering, 2021, 220, 108986.(IF=12.7)

    3.Haishun Jiang, Siyu Zhao, WenyaoLi,* Tobias P Neville, Isil Akpinar, Paul R. Shearing, Dan J. L.Brett,* and Guanjie He*, Realizing optimal hydrogen evolution reactionproperties via tuning phosphorous and transition metal interactions, GreenEnergy & Environment, 2020, 5, 506-512. (IF= 10.7)

    4.Haishun Jiang, Kenan Zhang, WenyaoLi,* Ze Cui, Shuang He, Siyu Zhao, Jun Li, Guanjie He,* Paul R.Shearing and Dan J. L. Brett,* MoS2/NiS core-shell structures forimproved electrocatalytic process of hydrogen evolution, Journal of Power Sources,2020, 472, 228497. (IF=8.1)

    5.Haishun Jiang, Zhe Cui, Chaoting Xu and WenyaoLi*. Humidatmospheric pressure plasma jets exposed micro-defects on CoMoO4nanosheets with enhanced OER performance,Chemical Communications, 2019, 55, 9432-9435. (Front Cover, IF= 4.3)

    生物组织工程方向:

    1.DanyangLi, Zhidong Ma, Kai Wang, Bingjie Hao, Xi Yang, Weixin Zhao, Jie Liu, Yu Zheng,Wenyao Li*, Qiang Fu, Kaile Zhang*. Covalent functionalization ofWnt pathway inhibitor with reduced graphene oxide-polyethylene glycol toinhibit urethral scar hyperplasia. Chemical Engineering Journal,2025, 511, 161693. (IF=13.3)

    2.Liyang Wang, Kai Wang, Ming Yang, Xi Yang,Danyang Li, Meng Liu, Changmei Niu, Weixin Zhao, Wenyao Li,*Qiang Fu,* Kaile Zhang*. Urethral Microenvironment Adapted SodiumAlginate/Gelatin/Reduced Graphene Oxide Biomimetic Patch Improves ScarlessUrethral Regeneration. Advanced Science, 2024, 11(2), 202302574.(IF=14.3, Frontcover)

    3.Kaile Zhang, Muhammad Aqeel Bhutto, LiyangWang, Kai Wang, Jie Liu, Wenyao Li,* Wenguo Cui,* Qiang Fu,*Double-layer nanofibrous sponge tube via electrospun fiber and yarn forpromoting urethral regeneration. Advanced Fiber Materials, 2023,5, 662-680. (IF= 17.2)

     

    代表性授权发明专利

    1.徐铭璨; 李文尧; 曹猛; 张瑾琛,一种MnO2纳米阵列超级电容器电极材料及其制备方法; ZL 201610176654.9

    2.李鹏; 李文尧; 行栋鹏; 李唯; 柯金龙,一种Ag掺杂MnO2纳米阵列超级电容器材料及其制备方法;ZL201610176928.4

    3.李文尧; 赵艳红; 汪静茹,一种超级电容器复合材料及其制备方法和应用;ZL 201610567086.5

    4.李文尧; 王哲; 唐红梅; 孙文静; 胡奇文; 江海顺; 张克楠,一种丝瓜活性炭气凝胶材料、其制备方法和应用;ZL 201910310519.2 ,授权日:20211130

    5.李文尧; 刘静静; 王哲; 张克楠; 江海顺,一种丝瓜络基活性炭水凝胶材料及其制备方法和应用;ZL 201911056512.9,授权日:20220823

     

    指导员工

    研究生:指导研究生30余名,已毕业20名。指导研究生发表多篇SCI论文,授权国家发明专利多项,获研究生国家奖学金。

    本科生:指导本科生参加国家级老员工创新以及上海市老员工创新项目,以本科生为第一发明人授权3项国家发明专利。

     

    招生

      本课题组招收具有材料、化学、物理、生物专业背景的硕士研究生,同时热忱欢迎本科生来实验室参观学习,也欢迎在实验室进行毕业设计和创新实验。如有咨询,请联系liwenyao@sues.edu.cn

  • 李方杰

    李方杰,博士,硕士生导师,副教授。主要从事合金材料的组织调控、性能优化以及新型合金设计理论的研究。入选2020年度上海市青年科技英才扬帆计划,并开展了“基于滑移/孪生变形机制的FCC相高熵合金形变强韧化研究”。2013年和2018年分别获得哈尔滨理工大学本科和上海大学博士学位。2018年至今在bv1946伟德官网从事教学科研工作。从事教学工作以来,多次获得公司教学督导组评分优秀,并且获得公司青年教师教学比赛二等奖。近年来,在国外期刊上发表SCI、EI收录论文10余篇。

    通讯地址:上海市松江区龙腾路333号行政楼1608

    联系电话:021-67791202

    电子邮箱:fangjieli119@126.com

    教育经历:

    2013.09-2018.06:上海大学|冶金物理化学  | 硕士/博士

    2009.09-2013.07:哈尔滨理工大学|材料成型及控制工程 | 本科

    代表性论文:

    (1)  Li, Fangjie; Zeng, Xin; Zhou, Xie; Sha, Yeyu; Shen, Qin; Wang, Xiaowei;  Liu, Min; Tailoring mechanical properties of AlCoCr0.5FexNi2.5 high  entropy alloys by cold rolling and annealing, MRS Communications, 2022.

    (2)  Li, Fangjie; Sha, Yeyu; Li, Jiuxiao; Yang, Dongye*; Zeng, Xin; Zhou,  Xie; Shen, Qin; Liu, Min*; Influences of recrystallisation and σ phase  precipitation on the mechanical properties of CoFeNiMnV high-entropy  alloy, Materials Today Communications, 2022, 32.

    (3)  Fangjie Li, A New Criterion for Prediction of Phase Stability in  Al‐Containing High Entropy Alloys. physica status solidi (b). 2022.

    (4)  Fangjie Li; Huigai Li*; Di Huang; Shaobo Zheng; Jinglin You; Mechanism  of MnS Precipitation on Al2O3–SiO2 Inclusions in Non oriented Silicon  Steel, Metals and Materials International, 2018, 24(6): 1394-1402.

    (5)  Fangjie Li; Huigai Li*; Shaobo Zheng; Jinglin You; Ke Han; Qijie Zhai;  Impacts of modification of alloying method on inclusion evolution in RH  refining of silicon steel, Materials, 2017, 10(10): 1206-1213.

    (6)  Fangjie Li; Huigai Li*; Yuan Wu; Dan Zhao; Bowen Peng; Hefei Huang;  Shaobo Zheng; Jinglin You; Effect of precipitates on grain growth in  non-oriented silicon steel, Journal of Materials Research, 2017, 32(12):  2307-2314.

    专利:

    (1)沙业雨,李方杰,常帅等.一种基于电子合金理论进行高熵合金成分设计的方法,授权号:CN111797502B。

    (2)常帅,李方杰等.一种基于Md-δ进行Al系高熵合金相结构预测的方法,公开号:CN113514625A。

    科研项目:

    (1)2020年度“创新行动计划”上海市青年科技英才扬帆计划,基于滑移/孪生变形机制的FCC相高熵合金形变强韧化研究,2020/07-2023/06 (主持, 在研, 20万);

    (2)精密冲压模具优化设计与高性能抗冲击模具材料研发,2022/06-2023/07(主持,结题,10万)

    指导员工获奖及项目立项情况:

    (1)2019年上海市老员工创新训练项目,Mn和V元素的添加对Co-Cr-Fe-Ni系高熵合金相形成规律的影响,(指导教师,已结题);

    (2)2020年国家级老员工创新训练项目,基于电子合金理论的Co-Cr-Fe-Ni-Mn-V系高熵合金的相结构演变规律研究,(指导教师,已结题);

    (3)2020年上海市老员工创新训练项目,Y改性CoFeNiMnVx系高熵合金相稳定性研究,(指导教师,已结题);

    (4)2020年校级老员工创新训练项目,Y改性CoFeNiMnVx系高熵合金第二相强化机制研究,(指导教师,已结题);

    (5)2020年研究生科研创新项目,基于电子合金理论设计高熵合金,(指导教师,已结题)。

  • 李 军

    姓名:李军  职称:二级教授,研究生导师

    指导研究方向:材料学

    通讯地址:上海市松江区龙腾路333号行政楼1625室

    电子邮箱:jacob_lijun@sues.edu.cn

    联系电话:021-67791200

    教育经历:

    2002.9-2005.7 华东理工大学 博士 材料学

    1999.9-2002.3 东北大学 硕士 材料学

    1995.9-1999.7 东北大学 学士 有色金属冶金

    工作经历:

    2022.9-至今bv1946伟德官网 伟德国际bevictor1946  经理 二级教授    

    2019.7-2022.9 bv1946伟德官网 科研处  副处长 三级教授  

    2013.7-2019.7 bv1946伟德官网 伟德国际bevictor1946 副经理 四级教授  

    2005.9-2013.7 bv1946伟德官网 伟德国际bevictor1946 系主任 四级教授、副教授、讲师

    研究方向:

    1. 材料表面改性

    2. 新能源材料及器件

    3. 微纳材料与绿色加工

    研究情况:

      作为项目负责人承担国家级和省部级等各类项目近20项,包括:1项国家自然科学基金面上项目;1项国家自然科学基金青年基金;1项上海市曙光人才计划;1项上海市青年科技启明星人才计划;1项上海市科委攻关项目;1项上海市自然科学基金面上项目;1项上海市科委纳米专项;7项企业委托项目。以第一和通讯作者名义在《Journal of Alloys and Compounds》、《Applied Surface Science》、《Thin Solid Films》、《Surface and Coatings Technology》等期刊发表SCI收录论文60余篇。申请国家发明专利12项,授权7项;制定上海市地方标准1项和团体标准1项。

    学术/社会兼职:

    1. 2022.8-2025.7担任中国产学研合作促进会第三届理事会 常务理事

    2. 2.2021.6-2025.6 担任bv1946伟德官网学报 副主编 第五届编委会委员

    3. 2017.11—2025.11 担任上海市激光学会 第十二届、十三届理事会理事

    论文信息:

    [1] R.L. Li, J. Li*, Y.N. Yan, M. Shao, J. Li. Tribocorrosion resistance of CoCrFeNiNbx laser-clad coatings in the neutral and acid solutions [J]. Optics & Laser Technology, 2023, 158: 108817.

    [2] Baige Yuan, Jun Li*, Manman Xia, Ying Zhang, Ruyan Lei, Peng Zhao and Xiao Li. Synthesis and electrochemical performance of hollow-structured NiO + Ni nanofifibers wrapped by graphene as anodes for Li-ion batteries [J]. Nanotechnology, 2021, 32:335603.

    [3] Yinsi Xu, Jun Li*, Wanggen Li. Evolution in electrochemical performance of the solid blend polymer electrolyte (PEO/PVDF) with the content of ZnO nanofiller [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 632:127773.  

    [4] X. Li, J. Li*, Y. Zhang, P. Zhao. Synthesis of Ni-MOF derived NiO/rGO composites as novel electrode materials for high performance supercapacitors [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 622:126653.

    [5] P. Zhao, J. Li*, Y. Zhang, X. Li, M.M. Xia, B.G. Yuan. Wear and high-temperature oxidation resistances of AlNbTaZrx high entropy alloys coatings fabricated on Ti6Al4V by laser cladding [J]. Journal of Alloys and Compounds, 2021, 862:158405.  

    [6] Ying Zhang, Jun Li*, Fan Zhang , Xiao Li , Baige Yuan , Manman Xia , Peng Zhao , Ruyan Lei. The evolution in electrochemical performance of Li4-XCaxTi5O12 (Ca doped Li4Ti5O12) as anode materials for lithium ion batteries [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 616: 126329.  

    [7] Y.L. Zhang, J. Li*, Y.Y. Zhang, D.N. Kang. Evolution in microstructure and high-temperature oxidation behaviors of the laser-cladding coatings with the Si addition contents [J]. Journal of Alloys and Compounds, 2020, 827:154131.

    [8] W.L. Jia, J. Li*, Z.J. Lu, Y.F. Juan, Y.Q. Jiang. Synthesis of porous Co3O4/Reduced graphene oxide by a two-step method for supercapacitors with excellent electrochemical performance [J]. Journal of Alloys and Compounds, 2020, 815: 152373.

    [9] Y.Q. Jiang, J. Li*, Y.F. Juan, Z.J. Lu, W.L. Jia. Evolution in microstructure and corrosion behavior of AlCoCrxFeNi high-entropy alloy coatings fabricated by laser cladding [J]. Journal of Alloys and Compounds, 2019, 775: 1-14.

    [10] Y.F. Juan, J. Li*, Y.Q. Jiang, W.L. Jia, Z.J. Lu. Modified criterions for phase prediction in the multi-component laser-clad coatings and investigations into microstructural evolution/wear resistance of FeCrCoNiAlMox laser-clad coatings [J]. Applied Surface Science, 2019, 465:700-714.

    获奖信息:

    1. 获得2021年度上海市育才奖;

    2. 入选2012年度上海市曙光人才计划,获得曙光学者称号;

    3. 入选2008年度上海市青年科技启明星人才计划,获得青年科技启明星称号;

    4. 入选公司2016年度志宏人才计划,获得志宏学者称号;

    5. 获得2022年度中国产学研合作促进会产学研合作创新成果优秀奖1项;

    6. 获得2010年度上海市科技进步三等奖1项;

    7. 获得2012年度上海市第二十四届优秀发明选拔赛金奖1项;

    8. 获得2014年度上海市首届青年教师教学竞赛三等奖1项。




  • 杨尚磊

    姓名:杨尚磊  职称:二级教授,博士研究生导师

    指导研究方向:机器人智能焊接、激光精密加工、材料与结构疲劳可靠性

    拟招收研究生专业要求:(1) 焊接类, (2) 材料类, (3) 机械类,(4) 控制工程类, (5) 电气工程类, (6) 计算机类, (7) 物理与数学类

    通讯地址:上海市松江区龙腾路333号 行政楼1603

    邮政编码:201620

    电子信箱:yslei@126.com

    联系电话:021-6779120117717330632

    教育经历:

    [1] 2007-052009-04,清华大学/ 南车青岛四方机车车辆股份有限公司,博士后 / 教授级高级工程师

    [2] 2003-032006-06,上海交通大学,材料加工工程专业,博士

    [3] 1998-092000-07,山东工业大学,材料加工工程专业,硕士

    [4] 1986-091990-07,山东工业大学,焊接专业,学士

    研究方向:

    [1] 机器人智能化焊接及精密连接技术与装备

    [2] 飞秒激光微/纳制造技术及可靠性研究

    [3] 铝合金等有色金属先进连接技术及结构完整性研究

    [4] 激光/电子束焊接及增材制造等高能束先进加工技术与装备

    研究情况:

    主要从事机械制造、机器人智能焊接、激光加工及结构完整性等方面的研究,主持国家自然科学基金面上项目、上海市科委重点项目、上海市自然科学基金以及企业委托横向项目等50余项,发表学术论文120余篇,其中SCI论文70余篇。获省部级科技奖励5项。依托“精密电热元件激光智能制造系统的研发与产业化”项目入选江苏省双创人才(创新类)。任上海市激光智能制造及质量检测技术服务平台负责人、上海市激光先进制造协同创新中心首席研究员/专职副主任、上海高校III类高峰学科“高能束加工与绿色制造”学术带头人,兼任中国机械工程学会焊接分会机器人与自动化专业委员、中国机械工程学会焊接分会计算机辅助焊接工程专业委员、中国汽车工程学会汽车材料分会连接技术专业委员、中国机械工业教育协会产教科融合工作委员会常务理事。

    主要纵向科研项目

    [1] 国家自然科学基金 面上项目,51971129,高强铝合金焊接HAZ强化相回溶-再析出及疲劳微观不均匀形变损伤机制,2020-012023-12,主持

    [2] 国家自然科学基金 面上项目,51075256,高速列车铝合金纵长焊接接头的非比例多轴低周疲劳短裂纹行为研究,2011-012013-12,主持

    [3] 上海市自然科学基金,19ZR1421200,基于同步辐射原位成像的夹杂物诱发航空发动机涡轮盘FGH96镍基高温合金的低周疲劳损伤行为研究,2019-072022-06,主持

    [4] 上海市自然科学基金,14ZR1418800,商用飞机高强铝合金焊接接头的低周疲劳损伤行为研究,2014-072017-06,主持

    [5] 上海市科委 重点项目,10JC1406100,大飞机铝合金厚板的低周疲劳短裂纹行为及其损伤演化机理研究,2010-072012-07,主持

    [6] 上海市科委,21DZ2294200,上海市激光智能制造及质量检测专业技术服务平台,2021-122023-11,主持

    [7] 上海市科委,20030500900,激光振镜精密螺旋焊接系统及关键技术研究,2020-102023-09,主持

    [8] 教育部 产学研合作育人项目,220501143305204,轻舟机器人实践基地建设,2022.06-2023.06,主持

    [9] 江苏省科技厅 产学研合作项目,BY2022216,新能源电池激光远程焊接关键技术及装置研究, 2022-012023-12,主持

    [10] 上海汽车工业科技发展基金,1404,轻量化液力变矩器及其关键工艺实现―总成铝-铝、铝-钢关键焊接工艺应用研究,2014-122016-12,主持

    主要学术/社会兼职:

    1、上海市激光智能制造及质量检测技术服务平台  负责人

    2、上海市激光先进制造协同创新中心  首席研究员/专职副主任

    3、上海高校III类高峰学科-“高能束加工与绿色制造”  学术带头人

    4、中国机械工程学会焊接分会 机器人与自动化专委会  专业委员

    5、中国机械工程学会焊接分会 计算机辅助焊接工程专委会  专业委员

    6、中国机械工程学会焊接分会 熔焊工艺及设备专委会  专业委员

    7、中国汽车工程学会汽车材料分会 连接技术专业委员会  委员

    8、中国机械工业教育协会产教科融合工作委员会  常务理事

    9、全国金属增材制造装备行业产教融合共同体  常务理事

    10、长三角G60科创走廊激光产业联盟  副理事长

    论文信息:(指导研究生第一作者部分SCI论文)

    [1] Suqi Xue, Shanglei Yang, LiXiner, Li Qiubo, Hu Bangguo. A comprehensive review on self-cleaning glasssurfaces: durability, mechanisms, and functional applications. RSC Advances, 2024, 14(46): 34390-34414

    [2] Cheng Nuo, Yang Shanglei, LiYanlei, Zhao Xinlong, Bi Junhang, Tian Jiawei. Analysis of fatigue fracturemechanism of laser spiral welding of dissimilar metals of 6082 high strengthaluminum alloy and DP980 high strength dual phase steel. Materials TodayCommunications, 2024, 41(110665): 1-21

    [3] ZihaoGao, Shanglei Yang, XuanMeng,ZhentaoWang, Zeng Peng. Effect of Heat Treatment on the Microstructure andMechanical Properties of Ti-6Al-4V by Electron Beam Melting. Journal ofMaterials Engineering and Performance, 2023, 32(3): 1432-1439

    [4] Zhentao Wang, Shanglei Yang,Zeng Peng, Zihao Gao. Effect of Defects in Laser Selective Melting of Ti-6Al-4VAlloy on Microstructure and Mechanical Properties after Heat Treatment, Opticsand Laser Technology, 2022, 156(108522): 1-11

    [5] FAN Cong, YANG Shang-lei, DUANChen-feng, ZHU Min-qi, BAI Yi-shan. Microstructure and mechanical properties of6061 aluminum alloy laser-MIG hybrid welding joint. Journal of Central SouthUniversity. 2022,29(3):898-911

    [6] Xuan Meng, Shanglei Yang, YubaoHuang, Yu Fang, Jiaxing Gu, Qi Xiong, Chenfeng Duan. Microstructurecharacterization and mechanism of fatigue crack propagation of 6082 aluminumalloy joints. Materials Chemistry and Physics, 2021, 257(123734): 1-6

    [7] Minqi Zhu, Shanglei Yang, YishanBai, Cong Fan. Uneven hardness mechanism and related fracture characteristicsin laser-MIG hybrid welded Al-Mg-Si alloy butt. Journal of Laser Applications,2021, 33(042054):1-13

    [8] Qi Xiong, Shanglei Yang, YanWang, et al. Fatigue damage study of cold metal transition fusion-brazedaluminium/steel dissimilar joints. Science and Technology of Welding andJoining, 2020, 25(4): 265-272

    [9] Duan Chenfeng, Yang Shanglei,Gu Jiaxing, et al. Microstructure and ratcheting behavior of 6061 aluminumalloy laser-MIG hybrid welding joint. Materials Research Express, 2019,6(5):1-10

    [10] Liu Haobo, Yang Shanglei, XieChaojie, et al. Mechanisms of fatigue crack initiation and propagation in 6005ACMT welded joint. Journal of Alloys and Compounds, 2018, 741: 188-196

    [11] Chaojie Xie, Shanglei Yang,Haobo Liu, et al. Microstructure and mechanical properties of robot cold metaltransfer Al5.5Zn2.5Mg2.2Cu aluminium alloy joints. Journal of MaterialsProcessing Technology, 2018, 255: 507-515

    [12] Haobo Liu, Shanglei Yang,Chaojie Xie, et al. Microstructure characterization and mechanism of fatiguecrack initiation near pores for 6005A CMT welded joint. Materials Science &Engineering A, 2017, 707: 22-29

    专利著作:(指导研究生第一发明人的授权发明专利)

    1、彭曾,杨尚磊,王贞涛,高紫豪,范聪,朱敏琪,白易山,黄玉宝,孟玄。一种激光双光束双螺旋点焊方法,发明专利授权号:ZL202211180567.2

    2王贞涛, 杨尚磊, 高紫豪, 彭曾, 范聪, 白易山, 朱敏琪, 黄玉宝, 孟玄. 激光-MIGTIG多种热源焊接铝合金的焊接方法及装置. 发明专利授权号:ZL202110816236.2

    3、孟玄, 杨尚磊, 房郁, 黄玉宝, 熊琦, 段晨风, 顾佳星, 王远, 曹亚明. 一种激光加热异种金属复合材料的超塑性轧制方法. 发明专利授权号:ZL201911165419.1

    4王妍, 杨尚磊, 邹玉国, 秦优琼, 姜亦帅, 杨智华. 一种轻型铝钢液力变矩器的焊接方法, 发明专利授权号:ZL201710001951.4

    5、姜亦帅, 杨尚磊, 王妍, 杨智华, 谢超杰, 刘浩博, 张琪, 曹亚明. 焊接件夹具, 发明专利授权号:ZL 201610422597.8

    6、杨智华, 杨尚磊, 邹玉国, 秦优琼, 姜亦帅, 王妍, 谢超杰, 刘浩博, 张琪, 曹亚明. 一种适用于环焊缝的基于三爪卡盘结构的同步旋压夹具, 发明专利授权号:ZL201610980977.3

    7、庹文海, 杨尚磊, 张冬梅, 杨智华, 王妍, 姜亦帅, 王佳, 杨文涛. 一种用于金属材料疲劳裂纹扩展的观测系统. 发明专利授权号:ZL 201510225456.2.

    获奖信息:

    1. 江苏省双创人才(创新类),获奖证书编号:(20181292

    2. 教育部科技进步二等奖,获奖证书编号:2002-214-3

    3. 国家科技部杜邦科技创新奖, 获奖证书编号:2002-C-04-006

    4. 山东省科技进步二等奖, 获奖证书编号:01-2-107-32

    5. 中国石化科技进步二等奖, 获奖证书编号:2002JBR-1021-2-6

    6、中国石化科技进步二等奖, 获奖证书编号:2004JBR-0031-2-04

    科研团队

    杨尚磊(二级教授/博士生导师

    徐培全(三级教授/硕士生导师

     盼(教授/硕士生导师

    张天理(副教授/硕士生导师

    秦优琼(副教授/硕士生导师

     


  • 杨 瑾



    姓名:杨瑾  职称:教授

    通讯地址:上海市松江区龙腾路333

    电子邮箱:jyang@sues.edu.cn

    联系电话:021-67791474

    个人简介

    杨瑾,工学博士,教授/硕士生导师/博士生兼职导师,先后入选上海市“曙光计划”、江苏省“双创人才计划”,兼任焊接杂志社首届青年编委会编委、中国机械工程学会高级会员中国光学学会高级会员、中国光学学会激光加工专委会高级委员,中国有色金属学会先进焊接与连接专委会首届委员、上海市焊接学会会员、上海高校III类高峰学科学术带头人。

    主要从事异质异性构件激光焊接与增材制造技术研究,主持国家自然基金青年及面上项目、“十三五”、“十四五”某部委领域基金与共用技术项目、中国博士后基金、上海市曙光、上海市外国专家、横向合作等课题。

    近年来在Scripta MaterMater DesAppl Surf SciJ Alloys CompdJ Mater Process TechnolMater Sci Eng A等制造领域期刊发表学术论文80余篇,入选ESI热点论文3篇、高被引论文6篇,引用1700余次,授权发明专利12件,出版专著《轻质材料激光焊接技术》,荣获上海市自然科学二等奖(排1)、中国机械工业科技进步二等奖(排1)和江西省自然科学二等奖(排2)。

    承担本科生和研究生课程6门,编写教材《常用铝合金焊接技术》,指导在读硕士研究生12名,已毕业博士、硕士研究生12名,指导员工荣获研究生国家奖学金1人次、上海市优秀毕业生4人次,上海老员工年度人物提名1人次,并荣获中国汽车轻量化应用技术创新成果大赛、“互联网+”创新创业大赛等竞赛10余人次。

    学习工作经历

    2005.092009.07     南昌大学            材料成型与控制工程——工学学士

    2009.092012.07     南昌大学            材料加工工程——工学硕士

    2012.072016.01     南昌大学            材料加工工程——工学博士

    2013.102015.09     加拿大滑铁卢大学          国家公派留学(合作导师:Y. Zhou

    2016.09至今        bv1946伟德官网          讲师、副教授、教授

    2020.062022.05     上海交通大学             博士后

    荣誉奖励

    科技奖励

    [1] 中国机械工业科技进步二等奖(排1),2023

    [2] 上海市自然科学二等奖(排1),2022

    [3] 江西省自然科学二等奖(排2),2022

    个人荣誉

    [1] 上海市“曙光计划”,2023

    [2] 江苏省“双创人才计划”,2021

    [3] 上海市教育委员会“记功”人员,2023

    [4] bv1946伟德官网“志宏董事长奖”,2023

    [5] bv1946伟德官网优秀党员,2022

    [6] bv1946伟德官网青年五四奖章集体,2022

    [7] bv1946伟德官网优秀班主任导师,2022

    [8] 江苏省科技镇长团优秀团员,2020

    [9] 中国有色金属学报(英文)最佳论文一等奖,2018

    代表性学术论著

    [1] Yang, J.*, Oliveira, J. P., Li, Y., Tan, C., Gao, C., Zhao, Y., & Yu, Z. (2022). Laser techniques for dissimilar joining of aluminum alloys to steels: A critical review.Journal of Materials Processing Technology, 301, 117443.ESI热点论文、ESI高被引论文、中科院二区TOP

    [2] Shen, J., Gonçalves, R., Choi, Y. T., Lopes, J. G., Yang, J., Schell, N., & Oliveira, J. P. (2023). Microstructure and mechanical properties of gas metal arc welded CoCrFeMnNi joints using a 308 stainless steel filler metal.Scripta Materialia, 222, 115053.ESI热点论文、ESI高被引论文、中科院一区TOP

    [3] Xia, H., Li, L., Tan, C., Yang, J., Li, H., Song, W., & Ma, N. (2022). In situ SEM study on tensile fractured behavior of Al/steel laser welding-brazing interface. Materials & Design, 224, 111320.ESI热点论文、ESI高被引论文、中科院一区TOP

    [4] Xue, J., Guo, W., Yang, J., Xia, M., Zhao, G., Tan, C., & Zhang, H. (2023). In-situ observation of microcrack initiation and damage nucleation modes on the HAZ of laser-welded DP1180 joint. Journal of Materials Science & Technology, 148, 138-149.ESI高被引论文、中科院一区TOP

    [5] Shen, J., Choi, Y. T., Yang, J., He, J., Zeng, Z., Zhou, N., & Oliveira, J. P. (2024). Fabrication of spatially-variable heterostructured CoCrFeMnNi high entropy alloy by laser processing. Materials Science and Engineering: A, 146272.(中科院一区TOP

    [6] Yang, J., Li, Y. L., Zhang, H., Guo, W., & Zhou, Y. (2015). Control of interfacial intermetallic compounds in Fe-Al joining by Zn addition. Materials Science & Engineering A, 645: 323-327.(中科院一区TOP

    [7] Shen, J., Gonçalves, R., Choi, Y. T., Lopes, J. G., Yang, J., Schell, N., & Oliveira, J. P. (2022). Microstructure and mechanical properties of gas metal arc welded CoCrFeMnNi joints using a 410 stainless steel filler metal. Materials Science and Engineering: A, 857, 144025.(中科院一区TOP

    [8] Hao, R., Zhao, Y. X., Su, J. H., Yang, J., Tan, T. C., Song X. G. (2024). Bonding mechanism of laser joining of Poly-Ether-Ether-Ketone film which used for 5G antenna substrate to copper foil. Journal of Manufacturing Processes, 108,153–164.(中科院一区TOP

    [9] Xu, W., Li, H., Yang, J.*, Zhao, Y., Oliveira, J. P., Liu, H., & Tan, C. (2022). Dynamic wetting and spreading mechanisms regulated by elemental Ni in a Mg/steel immiscible system during laser processing.Journal of Manufacturing Processes, 80, 600-611.(中科院一区TOP

    [10] Shen, Z., Li, W. Y., Ding, Y., Hou, W., Liu, X. C., Guo, W., Yang, J.& Gerlich, A. P. (2020). Material flow during refill friction stir spot welded dissimilar Al alloys using a grooved tool.Journal of Manufacturing Processes, 49, 260-270.(中科院一区TOP

    代表性科研项目

    [1] 国家自然科学基金委员会,面上项目,基于多孔高熵合金过渡层的铝/钢激光熔钎焊界面冶金反应调控与接头强韧化机理,2023-01至2026-12

    [2] 国家自然科学基金委员会,青年科学基金项目,铝/钢激光熔钎焊界面弥散相FeZn10调控及强韧化机理研究,2019-01至2021-12

    [3] 中国博士后科学基金会,面上项目,轻质高效铝-钢复合换热器激光熔钎焊界面冶金反应调控与接头强化机理研究,2021-05至2023-04

    [4] 上海市教育委员会,曙光计划,23SG50,铝/钢大差异金属激光熔钎焊界面冶金反应调控与接头强韧化机理,2024-01至2025-12

    [5] 企业横向,大型机身壁板薄壁铝合金智能高速激光焊技术研究,2024-04至2024-12

    [6] 企业横向,枪瞄镜薄壁筒结构超短脉冲激光精细加工技术研发,2022-10至2023-09

    [7] 企业横向,塑料针座与不锈钢针头结构设计、加工与连接技术,2023-08至2024-11

    [8] 企业横向,动力型电池壳异质铝合金激光焊工艺开发,2022-11至2024-11

    [9] 企业横向,原表面换热器装配与焊接工艺技术,2023-07至2024-03

    [10] 企业横向,锆板特材焊接技术研究,2022-03至2022-11

    科研团队

    杨瑾(教授/硕士生导师/博士生兼职导师

    薛菁(副教授/硕士生导师

    赵一璇(讲师/硕士生导师

    梁瑛(讲师/硕士生导师

    叶欣(讲师/硕士生导师

    实验室纳新

    热忱欢迎对激光增材制造(3D打印)、激光加工、激光焊接方向感兴趣的同学下实验室学习!本信息常年有效!感兴趣可以联系我:jyang@sues.edu.cn

    每年课题组组织队伍参加挑战杯、上证杯、互联网+等,均取得较好成绩,员工保研能加分。

    欢迎材料公司和各院系相关专业(包括电气、机械、计算机等)优秀本科生联系进入实验室学习。

    能提供的指导和资源:学业规划指导、学术能力提升、国际化交流平台、动手能力培养、科技创新项目全方位指导与支持。

    毕业出路:国外高校(加拿大、日本、葡萄牙)全额博士奖学金、国内著名高校(清华、上交、北航)博硕学习。


  • 吴 頔

    姓名:吴頔  职称:副教授,研究生导师

    指导研究方向:激光焊接过程监测及质量诊断

    通讯地址:上海市松江区龙腾路333号行政楼1615室

    电子邮箱:wudi@sues.edu.cn

    联系电话:021-67791474

    教育经历:

    1) 2013.09-2018.03: 上海交通大学 材料加工工程 博士

    2) 2010.09-2013.06:江苏科技大学 材料加工工程 硕士

    3) 2006.09-2010.06:  南京工程公司 材料科学与工程 学士

    工作经历:

    2018.08-至今   bv1946伟德官网  焊接技术与工程  副教授

    2021.09-2023.04 上海交通大学     材料加工工程   博士后

    研究方向:

    激光焊接过程监测及质量诊断

    研究情况:

    本人从事焊接技术与工程研究十多年,围绕先进焊接过程的原位在线监测及质量智能控制进行了系统、深入、长期的创新性研究。通过融合电弧物理、声学/光学理论、机器学习以及自动控制等多学科交叉知识,阐述了“工艺参数-多模态感知-熔池行为-焊接质量”的内在关联机制。构建了机理-数据融合驱动的焊接质量在线测量-评价-诊断-调控技术体系,为复杂焊接过程的在线监测及质量诊断提供理论支撑和关键技术。目前主持国家自然科学青年基金,上海市青年科技英才扬帆计划,中国博士后科学基金特别/面上资助,上海高校青年教师培养资助计划等国家/省部级项目。作为主要研究人员参与国家智能制造装备发展专项子课题,国家自然科学面上基金以及上海航天先进技术联合研究中心技术创新项目。

    学术/社会兼职:

    中国机械工程学会焊接学会机器人与自动化专业委员会委员;

    上海市焊接学会委员;

    中国机械工程学会焊接分会第六届青年委员;

    中国科技核心期刊《电焊机》编委;

    焊接杂志社青年编委会委员;

    Transactions on Intelligent Welding Manufacturing (TIWM)期刊编委

    论文信息:

    [1] Wu, D.(吴頔), Chen, H., Huang, Y., & Chen, S. (2018). Online monitoring and model-free adaptive control of weld penetration in VPPAW based on extreme learning machine. IEEE Transactions on Industrial Informatics, 15(5), 2732-2740.

    [2] Wu, D.(吴頔), Zhang, P., Yu, Z., Gao, Y., Zhang, H., Chen, H., & Tian, Y. (2022). Progress and perspectives of in-situ optical monitoring in laser beam welding: Sensing, characterization and modeling. Journal of Manufacturing Processes, 75, 767-791.

    [3] Liu, S., Wu, D.(吴頔), Luo, Z., Zhang, P., Ye, X., & Yu, Z. (2022). Measurement of pulsed laser welding penetration based on keyhole dynamics and deep learning approach. Measurement, 111579.

    [4] Wu, D.(吴頔), Huang, Y., Chen, H., He, Y., & Chen, S. (2017). VPPAW penetration monitoring based on fusion of visual and acoustic signals using t-SNE and DBN model. Materials & Design, 123, 1-14.

    [5] Wu, D.(吴頔), Chen, J., Liu, H., Zhang, P., Yu, Z., Chen, H., & Chen, S. (2019). Weld penetration in situ prediction from keyhole dynamic behavior under time-varying VPPAW pools via the OS-ELM model. The International Journal of Advanced Manufacturing Technology, 104(9), 3929-3941.

    [6] Wu, D.(吴頔), Huang, Y., Zhang, P., Yu, Z., Chen, H., & Chen, S. (2020). Visual-acoustic penetration recognition in variable polarity plasma arc welding process using hybrid deep learning approach. IEEE Access, 8, 120417-120428.

    [7] Wu, D.(吴頔), Hu, M., Huang, Y., Zhang, P., & Yu, Z. (2021). In situ monitoring and penetration prediction of plasma arc welding based on welder intelligence-enhanced deep random forest fusion. Journal of Manufacturing Processes, 66, 153-165.

    [8] Wen, X., Wu, D.(吴頔), Zhang, P., Liu, S., Luo, Z., Jia, Z., Yu, Z. (2021). Influence mechanism of the keyhole behavior on penetration depth by in-situ monitoring in pulsed laser welding of aluminum alloy. Optik, 246, 167812.

    [9] Wu, D.(吴頔), Chen, H., Huang, Y., He, Y., Hu, M., & Chen, S. (2017). Monitoring of weld joint penetration during variable polarity plasma arc welding based on the keyhole characteristics and PSO-ANFIS. Journal of Materials Processing Technology, 239, 113-124.

    专利著作:

    [1] 张培磊; 魏艳茹; 吴頔, 等; 一种超高硬度激光熔覆复合涂层材料及其制备方法,2021-04-30至2039-04-01, 中国,CN201910257153.7.   

    [2] 刘思凯, 吴頔; 罗钟毅, 等; 基于穿孔熔池图像和深度学习的VPPAW熔透原位实时监测系统,2021-08-02, 中国,CN202110878672.2.   

    [3] 张华军; 兰虎; 于治水; 吴頔, 等;一种大型起重机箱梁焊接制造的变形数字孪生优化方法,2022-03-18至2040-10-19, 中国,CN202011116988.X.   

    [4] 张培磊; 谈杰; 吴頔; 一种用于T型接头激光焊接夹具,2020-1-24至2030-1-24, 中国,CN209986398U.

    获奖信息:

    [1] 2019年上海市“创新行动计划”青年科技英才扬帆计划(省部级人才);

    [2] 2022年指导研究生获得“中国光谷 华为杯”第十九届研究生数学建模竞赛二等奖;

    [3] 2021年第七届中国国际“互联网+”老员工创新创业大赛上海赛区铜奖(指导教师);

    [4] 2022年“挑战杯”老员工创业计划竞赛校级金奖(优秀指导老师);



  • 张可敏

    姓名:张可敏  职称:三级教授,研究生导师

    指导研究方向:高能束材料表面改性,先进能源材料

    通讯地址:松江区龙腾路333号

    电子邮箱:zhangkm@sues.edu.cn

    联系电话:021-67791300

    教育经历:

    1996.09--2000.09  吉林工公司材料科学与工程系金属腐蚀与防护专业学习(本科)  2000.09--2003.04  长春工业大学伟德国际bevictor1946材料学专业硕士研究生

    2003.09--2006.11  大连理工大学伟德国际bevictor1946材料学专业博士研究生

    2006.11--2007.11  法国梅斯大学组织研究及材料应用实验室博士后

    工作经历:

    2008.04--2008.12  伟德国际bevictor1946讲师

    2008.12--2013.06  伟德国际bevictor1946副教授

    2013.06--2013.12  伟德国际bevictor1946副经理

    2013.12--2022.08  伟德国际bevictor1946副经理、教授

                 (其间:2017.03--2018.02 挂职宝山城市工业园区管理委员会副主任)

    2022.08--      bv1946伟德官网图书馆馆长、教授

                 (2021.09--    九三学社bv1946伟德官网委员会主任委员)

    研究方向:

      高能束材料表面改性,先进能源材料

    研究情况:

      近十年内发表论文28篇,其中SCI收录17篇,一类论文9篇(被引用1063次),参加国际会议作报告3次。

    主持国家自然科学基金2项(1项结题、1项在研),合作完成国家自然科学基金面上项目2项。主持并完成上海市人才发展资金项目1项,上海市纳米专项基金项目1项,上海市现代冶金与材料制备重点实验室开放课题1项。发明专利授权1项,软件著作权登记1项。主持上海市重点课程2项,获校级教学成果奖2项。

    学术/社会兼职:

      上海市经信委专项资金评审专家

      国家自然科学基金函评专家

      上海市青年联合会常委

      上海市松江区第六届人民代表大会代表

      九三学社上海市委员会委员

    论文信息:(部分代表作)

    1. 通讯作者,Using amorphous CoSx hollow nanocages as cathodes for high-performance magnesium-lithium dual-ion batteries,Applied Surface Science,2022.05.

    2. 通讯作者,Li+ additive accelerated structural transformation of MoS2 cathodes for performance-enhancing rechargeable Mg2+ batteries,Materials Today Energy,2022.05.

    3. 通讯作者,Microstructure and property modifications in surface layers of Mg-4Sm-2Al-0.5Mn alloy induced by pulsed electron beam treatments,Journal of Magnesium and Alloys, 2021.01.

    4. 通讯作者,Trimesic acid-Ni based metal organic framework derivative as an effective destabilizer to improve hydrogen storage properties of MgH2, International Journal of Hydrogen Energy, 2021.08.

    5. 通讯作者,Surface modifications of a hyperperitectic Zn-10 wt% Cu alloy by pulsed electron beam treatment, Surface & Coatings Technology, 2020.04.

    6. 通讯作者,Surface microstructure modifications and in-vitro corrosion resistance improvement of a WE43 Mg alloy treated by pulsed electron beams, Vacuum, 2020.03.

    7. 通讯作者,Surface microstructure and property modifications in a Mg-8Gd-3Y-0.5Zr magnesium alloy treated by high current pulsed electron beam, Journal of Alloys and Compounds, 2019.01.

    8. 通讯作者,Effect of the high current pulsed electron beam treatment on the surface microstructure and corrosion resistance of a Mg-4Sm alloy, Journal of Alloys and Compounds,2018.04.

    9. 通讯作者,Microstructure and properties in surface layers of Mg-6Zn-1Ca magnesium alloy laser-clad with Al-Si powders, Transactions of Nonferrous Metals Society of China, 2018.01.

    10. 第一作者,Surface microstructure and property modifications in a duplex stainless steel induced by high current pulsed electron beam treatments, Journal of Alloys and Compounds, 2017.06.

    11. 通讯作者, Laser cladding of a Mg based Mg–Gd–Y–Zr alloy with Al–Si powders,Applied Surface Science,2016.03.

    12. 通讯作者,Microstructure and corrosion resistance of TC2 Ti alloy by laser cladding with Ti/TiC/TiB2 powders, Applied Surface Science, 2015.04.

    专利著作:

    1.一种纯钛的表面改性方法、国家发明专利,授权时间2018.01

    2.用于高能束材料表面热处理的计算软件,软件著作权登记,登记号:2012SR041547,授权时间2012.05




  • 张 艳

    姓名:张艳  职称:副教授,研究生导师

    指导研究方向:材料物理与化学,纳米材料与器件,复合材料

    通讯地址:上海市松江区龙腾路333号

    电子邮箱:yanzhang@sues.edu.cn

    联系电话:021-67791380

    教育经历:

    2008.09-2013.06上海交通大学,材料科学与工程专业,博士

    2004.09-2008.07华东理工大学,无机非金属材料工程专业,学士

    工作经历:

    2021.06-至今      bv1946伟德官网,伟德国际bevictor1946,电子封装技术系副系主任

    2020.01-至今bv1946伟德官网,伟德国际bevictor1946,副教授

    2013.07-2019.12  bv1946伟德官网,伟德国际bevictor1946,讲师

    研究方向:

    (1)纳米材料的可控合成;

    (2)先进功能材料制备;

    (3)生物传感器、气体传感器、柔性传感器、致动器。

    研究情况:

      长期致力于纳米材料、二维材料的制备、表征及应用研究,探索纳米材料在传感器、致动器等重要领域的应用。作为项目负责人先后主持国家自然科学基金青年基金、上海市“扬帆计划”、bv1946伟德官网“展翅计划”等项目。目前发表SCI论文30余篇,其中以第一作者或者通讯作者在Small、Sensors and Actuators B: Chemical、Nanoscale等国际期刊上发表SCI论文20余篇。SCI他引1400多次,单篇引用>100次的论文共计3篇,ESI高被引论文3篇。培养10余名硕士研究生,其中多名硕士研究生荣获上海市优秀毕业生称号。

    论文信息:

    (1)  Ling Li, Guangwen Jia, Wenwei Huang, Jiayi Zhou, Chenxing Li, Jingxuan Han, Yan Zhang*, Xuejiao Zhou*, Multi-responsive soft actuator with integrated ultrasensitive sensing performances for human motion detection and soft robots, Sensors & Actuators: A. Physical 2023, 351:114149

    (2) Chenxing Li, Ao Zheng, Jiayi Zhou, Wenwei Huang, Yan Zhang*, Jingxuan Han, et al. A self-adhesive, self-healing and antibacterial hydrogel based on PVA/MXene-Ag/sucrose for fast-response, high-sensitivity and ultra-durable strain sensors, New Journal of Chemistry 2023, 47: 6621-6630

    (3) Y. Zhang*, L. Zhang, C. Li, J. Han, W. Huang, J. Zhou, et al. Hydrophilic antifouling 3D porous MXene/holey graphene nanocomposites for electrochemical determination of dopamine,Microchemical Journal 2022, 181: 107713

    (4) L. Zhang, C. Li, Y. Yang, J. Han, W. Huang, J. Zhou, Y. Zhang*, Anti-biofouling Ti3C2TX MXene-holey graphene modified electrode for dopamine sensing in complex biological fluids, Talanta, 2022,247:123614  

    (5) Huang, J. Zhou, Y. Yang*, Hydrophilic antifouling 3D porous MXene/holey graphene nanocomposites for electrochemical determination of dopamine, Microchem. J., 2022, 181:107713.  

    (6) G. Jia, A. Zheng, X. Wang, L. Zhang, L. Li, C. Li, Y. Zhang*, L. Cao*, Flexible, biocompatible and highly conductive MXene-graphene oxide film for smart actuator and humidity sensor, Sens. Actuators B Chem., 2021,346:130507.

    (7)  Z. Chen, Y. Zhang *, Y. Yang, X. Shi*, L. Zhang, G. Jia, Hierarchical nitrogen-doped holey graphene as sensitive electrochemical sensor for methyl parathion detection, Sens. Actuators B Chem., 2021, 336: 129721.  

    (8)  J. Zhou, Y. Zhang *, G. Jia, Z. Chen, Y. Yang*, L. Zhang, A multifunctional sponge incorporated with TiO2 and graphene oxide as a reusable absorbent for oil/water separation and dye absorption. New J. Chem. 2021, 45, 4835-4842.

    (9)   J. Zhou, Y. Zhang *, Y. Yang, Z. Chen, G. Jia, L. Zhang, Silk fibroin-graphene oxide functionalized melamine sponge for efficient oil absorption and oil/water separation, Appl. Surf. Sci., 2019, 497: 143762. 一区,IF=7.392

    (10)  Z. Chen, Y. Zhang*, J. Zhang, J. Zhou, Electrochemical sensing platform based on three-dimensional holey graphene for highly selective and ultra-sensitive detection of ascorbic acid, uric acid, and nitrite, J. Electrochem. Soc., 2019, 166(10): B787-B792.  

    (11)  L. Wang, Y. Zhang*, J. Zhang, X. Zhou*, Preparation of an Au nanoparticle-graphene oxide quantum dot hybrid and its use in surface-enhanced Raman scattering. New Carbon Mater. 2019, 34 (6), 606-610.  

    (12) J. Zhang, Y. Zhang*, J. Zhou, L. Wang, Construction of a highly sensitive non-enzymatic nitrite sensor using electrochemically reduced holey graphene, Anal Chim Acta 2018, 1043: 28-34

    (13) L. Wang, Y. Zhang*, Y. Yang, J. Zhang, Strong Dependence of Surface Enhanced Raman Scattering on Structure of Graphene Oxide Film, Materials 2018, 11(7): ma11071199

    (14) Zhang, Y.; Wu, C.; Zhang, J.; Guo, S., Mass Transport Effect on Graphene Based Enzyme Electrochemical Biosensor for Oxalic Acid Detection. Journal of The Electrochemical Society 2017, 164 (2) : B29-B33,

    (15) Y. Zhang*, H. Hao, L. Wang, Effect of morphology and defect density on electron transfer of electrochemically reduced graphene oxide, Applied Surface Science, 390 (2016) 385-392.

    (16) Yan Zhang, Congyu Wu, Xuejiao Zhou, Xiaochen Wu, Yongqiang Yang, Haixia Wu, Shouwu Guo*, Jingyan Zhang*, Graphene Quantum Dots/Gold Electrode and Its Application in Living Cells H2O2 Detection. Nanoscale, 2013, 5(5), 1816-1819.

    (17) Yan Zhang, Congyu Wu, Shouwu Guo*, Jingyan Zhang*, Interactions of Graphene and Graphene Oxide with Proteins and Peptides. Nanotechnology Rev., 2013, 2(1): 27-45.

    (18) Yan Zhang, Jingyan Zhang*, Xuelei Huang, Xuejiao Zhou, Haixia Wu, Shouwu Guo*, Assembly of Graphene Oxide-Enzyme Conjugates through Hydrophobic Interaction. Small, 2012, 8(1): 154-159.

    (19) Yan Zhang, Jiali Zhang, Haixia Wu, Shouwu Guo*, Jingyan Zhang*, Glass Carbon Electrode Modified with Horseradish Peroxidase Immobilized on Partially Reduced Graphene Oxide for Detecting Phenolic Compounds. J. Electroanal. Chem., 2012, 681: 49-55.

    (20) Xuejiao Zhou, Yan Zhang, Chong Wang, Xiaochen Wu, Yongqiang Yang, Bin Zheng, Haixia Wu, Shouwu Guo, Jingyan Zhang, Photo-Fenton Reaction of Graphene Oxide: A New Strategy to Prepare Graphene Quantum Dots for DNA Cleavage. ACS Nano, 2012, 6(8): 6592-6599.

    (21) Y. Zhang, J. Zhang, X. Huang, X. Zhou, H. Wu, S. Guo, Assembly of Graphene Oxide-Enzyme Conjugates through Hydrophobic Interaction, Small 2012, 8(1): 154-159.

    (22) Yan Zhang, Haixia Wu, Xuelei Huang, Jingyan Zhang* and Shouwu Guo*, Effect of Substrate (ZnO) Morphology on Enzyme Immobilization and Its Catalytic Activity. Nanoscale Res. Lett., 2011, 6(1): 450.

    专利著作:

    (1) 张艳; 王玲; 张婧; 李坤; 陈壮; 一种垂直取向石墨烯基材料的制备方法, 2019-4-11,中国, ZL201710208346.4.   

    (2) 张艳; 周健; 陈振斐; 魏仡昕; 一种丝素蛋白/氧化石墨烯复合改性吸油海绵的制备方法,2021-05-11,中国, ZL201910288638.2.   

    (3) 张艳;陈振斐;周健;贾广雯;章路;一种三维多孔石墨烯基电化学电极材料及其制备与应用, 2021-07-09, 中国,ZL201910429343.2

    (4) 张艳; 周健; 陈振斐; 一种丝素/壳聚糖/多孔氧化石墨烯复合三维支架的制备方法,  2022-02-11,中国, ZL201910288808.7  

    (5) 张艳;贾广雯;章路;李玲;李辰星;一种具有湿度响应的MXene-GO复合膜及其制备方法与应用,2023-04-28,中国,ZL20211018735.

  • 张培磊

    姓名:张培磊 职称:教授,研究生导师

    指导研究方向:激光先进制造技术与工程

    通讯地址:上海市松江区龙腾路333

    电子邮箱:peilei@sues.edu.cn

    联系电话:021-67791412



    教育经历:

    1999-2003 华东船舶工业公司 焊接技术与工程 学士

    2003-2006 江苏科技大学 材料加工与工程 硕士

    2006-2010 上海交通大学 材料加工与工程 博士/博士后


    工作经历:

    2010-至今 bv1946伟德官网 教师

    2014-2015 中南大学 访问学者

    2019-2020 德国弗朗霍夫ILT激光技术研究所 高级访问学者

    2020-2024 上海交通大学/江苏新扬子江造船有限公司 博士后


    研究方向:

    [1] 新材料焊接及其物理冶金

    [2] 非晶合金的激光增材制备

    [3] 机器人智能化激光焊接装备及制造技术

    [4] 超快激光微/纳米尺度精密加工及应用


    研究情况:

    一直致力于激光与材料相互作用、激光智能制造系统、非晶合金凝固及断裂过程、微观组织演变与数值模拟的研究。目前已在激光智能制造、材料结构表征与性能评价等领域的国际知名期刊发表 SCIEI 收录论文180余篇,申请国家各类专利50余项,获得国家发明专利授权20余项、实用新型专利授权5项。指导完成国家级、上海市等老员工创新训练计划项目12项,指导员工获国家奖学金6人次、上海市老员工新材料创新创意大赛一等奖。担任SVOA Materials Science & Technology期刊编委、Coatings期刊特刊编辑、Frontiers in Metals and Alloys期刊评论编辑、焊接杂志社青年编委、《金属加工(热加工)》编委,荣格工业传媒“激光加工行业—荣格技术创新奖”评审专家组成员,“大东时代•卡恩奖新能源领域系列奖项”评委,受邀为Materials TodayACS Applied Nano MaterialsMaterials Science and Engineering A, Applied Surface Science, Journal of Alloys and Compounds 等多家国际著名期刊审稿人。目前为中国机械工程学会焊接分会委员、中国机械工业教育协会焊接技术与工程专业教学委员会委员、上海市焊接学会理事、中国光学学会激光加工专业委员会委员,担任上海市激光先进制造技术协同创新中心首席研究员。作为项目负责人已完成国家自然科学基金、中央军委总装备部预研项目、上海市自然科学基金、上海市科委重点研发项目、上海市高新技术领域重点项目、新疆自治区科技援疆专项、克拉玛依市重大专项等多项国家、省市级课题的研究。还承担了上海电气电站设备有限公司、上海电气核电设备有限公司、上海振华重工有限公司、上海外高桥造船有限公司、中国科公司合肥物质科学研究院、中车青岛四方机车车辆股份有限公司、通快(中国)有限公司等企业委托技术开发课题的研究,获全国博士后创新创业总决赛铜奖(全国优秀博士后)、上海科技进步一等奖、新疆机械电子工业科学技术进步奖一等奖、国际焊接学会会刊《Welding in The World》年度最佳论文奖,入选美国斯坦福大学和爱思唯尔(Elsevier)发布的《2022年度全球前2%顶尖科学家榜单》,入选江苏省“双创人才”。

    学术/社会兼职:

    [1] 上海市焊接学会理事(第十届、第十一届)

    [2] SVOA Materials Science & Technology》杂志编委

    [3] 焊接杂志社青年编委会委员

    [4] 《金属加工(热加工)》编辑委员会委员

    [5] Coatings》期刊特刊编辑(2次)

    [6] Frontiers in Metals and Alloys》期刊评论编辑

    [7] 中国机械工业教育协会焊接技术与工程专业教学委员会委员(第四届)

    [8] 中国机械工程学会焊接分会委员(第十一届)

    [9] 中国机械工程学会高级会员

    [10] 中国光学学会激光加工专业委员会委员

    [11] 国家自然科学基金通讯评议专家(面、地、青)

    [12] 教育部学位论文通讯评议专家

    [13]大东时代•卡恩奖新能源领域系列奖项评委

    [14]“激光加工行业—荣格技术创新奖”评审专家组成员


    获奖情况:

    [1]bv1946伟德官网优秀青年教师(20142018

    [2]上海市科技进步奖一等奖(2015

    [3]上海市老员工新材料创新创意大赛 “优秀指导教师”称号(2022

    [4]新疆机械电子工业科学技术进步奖一等奖(2022

    [5]国际焊接学会会刊《Welding in The World》年度最佳论文奖(2022

    [6]第二届全国博士后创新创业大赛总决赛铜牌(2023

    [7]第二届全国博士后创新创业大赛优秀博士后(2023

    [8]美国斯坦福大学和爱思唯尔(Elsevier)发布的《2022年度全球前2%顶尖科学家榜单》(World’s Top 2% Scientists)(2023


    主持纵向项目:

    [1]国家自然科学基金面上项目(52075317),2021.1-2024.12

    [2]国家自然科学基金青年项目(51605276),2017.1-2019.12

    [3]上海市自然科学基金(12ZR1444500),2012.10~2015.09

    [4]上海市科委地方高校能力建设项目(13160501200),2013.6~2016.6

    [5]上海高校青年教师培养资助计划(shgcjs003),2012.01~2013.12

    [6]上海市教委创新项目(14YZ139) 2014.1~2016.12

    [9]新疆自治区区域协同创新专项(科技援疆计划)2019E0235),2019.01-2020.12,疆外合作单位负责人;

    [10]装备预先研究项目合作项目(2018No.3),2017.01-2020.12

    [11]上海市2019年度“科技创新行动计划”高新技术领域项目(19511106402), 2019.9-2022.8


    代表论文信息(*——通讯作者):

    [1] B. Liu, P. Zhang*(张培磊), H. Yan, Q. Lu, H. Shi, Z. Liu, D. Wu, T. Sun, R. Li, Q. Wang, A Review on Manufacturing Pure Refractory Metals by Selective Laser Melting, J. Mater. Eng. Perform. (2024).

    [2] K. Jiang, P. Zhang*(张培磊), S. Song, T. Sun, Y. Chen, H. Shi, H. Yan, Q. Lu, G. Chen, A review of ultra-short pulse laser micromachining of wide bandgap semiconductor materials: SiC and GaN, Mater. Sci. Semicond. Process. 180 (2024) 108559.

    [3] B. Liu, P. Zhang*(张培磊), Z. Liu, D. Wu, Q. Jiang, T. Sun, C. Liu, H. Yan, H. Shi, S. Ma, R. Li, Preparation of Zr-based metallic glasses gradient composites with designable amorphous fraction by laser powder bed fusion, J. Manuf. Process. 120 (2024) 506–516.

    [4] W.S. Lei*, G. Qian, P. Zhang*(张培磊), Validation of local approach-based statistical models for cleavage fracture of ferritic steels in uniaxial tension, Fatigue Fract. Eng. Mater. Struct. 47 (2024) 1807–1814.

    [5] W.S. Lei*, G. Qian, P. Zhang*(张培磊), Statistical characterization of specimen size and temperature dependence of cleavage fracture toughness of ferritic steels, Fatigue Fract. Eng. Mater. Struct. 47 (2024) 2243–2250.

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    [97] Z. Peilei*(张培磊), L. Xiaopeng, L. Yunlong, Y. Hua, Y. Zhishui, L. Chonggui, L. Qinghua, Microstructure and wear behavior of Cu-Mo-Si coatings by laser cladding, Appl. Surf. Sci. 311 (2014) 709–714.

    [98] M. Kai, Y. Zhishui*, Z. Peilei*(张培磊), L. Yunlong, Y. Hua, L. Chonggui, L. Xiaopeng, Influence of wire feeding speed on laser brazing zinc-coated steel with Cu-based filler metal, Int. J. Adv. Manuf. Technol. 76 (2014) 1333–1342.

    [99] P.L. Zhang*(张培磊), H. Yan, P.Q. Xu, Z.S. Yu, C.G. Li, Q.H. Lu, Effect of laser surface hardening on the microstructure, hardness, wear resistance and softening of a low carbon steel, Lasers Eng. 28 (2014) 135–149.

    [100] Z. Peilei*(张培磊), L. Yunlong, Y. Hua, M. Kai, X. Peiquan, Y. Zhishui, C. Yingying, D. Min, Effect of Nb addition on Fe-Ni-B-Si amorphous and crystalline composite coatings by laser processing, Surf. Coatings Technol. 236 (2013) 84–90.

    [101] P. Zhang*(张培磊), H. Yan, P. Xu, Q. Lu, C. Li, Z. Yu, Influence of different annealing temperatures and cooling rates on amorphous and crystalline composite coating, Surf. Coatings Technol. 206 (2012) 4981–4987.

    [102] P. Zhang*(张培磊), H. Yan, C. Yao, Z. Li, Z. Yu, P. Xu, Synthesis of Fe-Ni-B-Si-Nb amorphous and crystalline composite coatings by laser cladding and remelting, Surf. Coatings Technol. 206 (2011) 1229–1236.

    [103] P. Zhang*(张培磊), H. Yan, C. Yao, Z. Li, Z. Yu, P. Xu, Relationship between the γ and some parameters of Fe-based bulk metallic glasses, Int. J. Mater. Res. 103 (2012) 336–340.

    [104] P. Zhang*(张培磊), H. Yan, P. Xu, Z. Yu, C. Li, Microstructure and tribological behavior of amorphous and crystalline composite coatings using laser melting, Appl. Surf. Sci. 258 (2012) 6902–6908.

    [105] P.L. Zhang*(张培磊), Z.G. Li, C.W. Yao, Z.S. Yu, H. Yan, Microstructure evolution in a Fe 36Ni 36B 19.2Si 4.8Nb 4 bulk amorphous alloy irradiated by a CO 2 laser beam, Lasers Eng. 23 (2012) 221–230.

    [106] P.L. Zhang*(张培磊), S. Yao, M. Ding, F.G. Lu, S.N. Lou, Microstructural analysis in the vacuum brazing of copper to copper using a phosphor-copper brazing filler metal, Int. J. Mater. Res. 101 (2010) 1436–1440.

    [107] 蒋旗, 张培磊*, 刘志强, 于治水, 史海川, 冷金属过渡加脉冲电弧增材制造4043铝合金薄壁件的组织与拉伸性能, 机械工程材料. v.44;No.37 (2020) 57–61.

    [108] 吴希, 张培磊*, 唐满, 李明川, 于治水, 李绍伟, -铝异种箔片纳秒激光扫描点焊成形及组织特征, 中国激光. v.46;No.50 (2019) 75–82.

    [109] 李明川, 张培磊*, 于治水, 闫华, 叶欣, 李绍伟, 激光熔覆Ni-Ti-Si合金的组织及微观力学性能, 稀有金属材料与工程. (2019).

    [110] 何珊珊, 于治水*, 张培磊*, 李明川, 闫华, 李绍伟, 亚微米TiC/B4C颗粒对激光熔覆Stellite涂层组织及性能影响, 中国激光. 46 (2019) 302010–302011.

    [111] 聂云鹏, 张培磊*, 庄乔乔, 李雷, 4043铝合金冷金属过渡薄壁构件电弧快速成形, 焊接学报. v.39 (2018) 58-62+131.

    [112] 刘政君, 顾思远, 张培磊*, 于治水*, 叶欣, 顾勇. 高强钢激光-MIG复合焊对接间隙下的焊缝成形机理. 中国激光, 2019, 46(9): 0902006

    [113] 李雷,于治水*,张培磊*,庄乔乔,聂云鹏. TC4 钛合金电弧增材制造叠层组织特征. 焊接学报,2018,(3912:37-43.

    [114] 顾思远,刘政君,张培磊*,于治水*,叶欣,顾勇. 高速激光电弧复合焊接高强钢焊缝的形貌及成形机理. 中国激光,2018,(4512:1202007-1.

    [115] 卢云龙,张培磊*,马凯,于治水,闫华,李崇桂. 激光合金化Ni-W-Si涂层的组织与性能研究.稀有金属材料与工程,2016452):375-380.

    [116] 庄乔乔,张培磊*,李明川,闫华,于治水. 铜合金表面激光熔覆Ni-Ti-Si涂层组织及耐磨性研究. 中国激光,2017,4411):1102002-1~7.

    [117] 李明川,张培磊*,庄乔乔,闫华,于治水. 铜板表面激光熔覆 Ni-Mo-Si涂层的组织和微观力学性能. 中国激光,2017,4412):1202004-1~8.

    [118] 刘晓鹏, 张培磊*,卢云龙. 激光熔覆硅化物涂层强化相的研究进展.材料导报,2015,291):72.75.

    [119] 刘晓鹏,张培磊*,卢云龙. 纯铜表面激光熔覆 Ni基硅化物涂层摩擦学性能研究. 中国激光,2015,429):0906005-1~7.

    [120] 褚振涛,于治水,张培磊*,卢庆华,李绍伟,马凯. 基于响应面分析的T型接头激光深熔焊焊缝形貌预测及工艺参数优化. 中国激光,2015,422):0203006.1~9.

    [121] 马凯,于治水,张培磊*,卢云龙,褚振涛,史海川. 送丝速度对镀锌钢激光钎焊接头性能影响研究. 中国激光,2014,4010):1003003.1~5.

    [122] 张培磊*,李铸国,姚成武,于治水,闫华. 激光制备Fe.Ni基非晶复合涂层及退火性能研究. 焊接学报,2011(32)4:13.16.

    [123] 张培磊*,李铸国,于治水,闫华,徐培全. 激光熔覆+重熔制备Fe.Ni.B.Si.Nb系非晶纳米晶复合涂层研究. 中国有色金属学报,2011,21(11):2846.2851.

    [124] 张培磊*,姚舜,于治水,丁敏, 徐培全. 亚共晶钎缝组织分析与冷却速率对其形态的影响. 材料工程,2011,4:25.28.


    专利著作:

    [1]张培磊,马凯,卢云龙,闫华,一种基于激光同步送粉焊接镀锌钢板与镁合金的合金粉末和方法. (发明专利号:ZL 201310143397.5

    [2]张培磊,卢云龙,闫华,丁敏,一种用于填充点焊不锈钢高熵合金粉末和一种高熵合金粉末填充点焊不锈钢的工艺方法. (发明专利号:ZL 201310142899.6

    [3]张培磊,刘晓鹏,卢云龙,闻倩艺,庄乔乔,聂云鹏,李雷,一种耐磨激光熔覆层材料及其制备方法. (发明专利号:ZL 201410836658.6

    [4]张培磊,于治水,李国进,一种907A高强钢T型接头激光焊接加工方法.(发明专利号:ZL 201510136545.X

    [5]聂云鹏,张培磊,庄乔乔,李雷,一种用于焊接机器人电弧焊枪与传感器之间的随行夹具. (实用新型专利号:ZL 201720022512.7

    [6]聂云鹏,张培磊,庄乔乔,李雷,于治水,一种用于焊枪与传感器的随行焊接夹具. (发明专利号: ZL 201710013893.7

    [7]张培磊,于治水,闫华,吴希,一种用于焊缝跟踪传感器的固定装置. (实用新型专利号:ZL 201820338820.5

    [8]张培磊,褚振涛,杨橄生,马凯,一种激光深熔焊热源模型的建模方法. (发明专利号:ZL 201410012392.3

    [9] 李雷,于治水,张培磊,一种固定于焊枪的钛合金堆焊气体保护罩. (发明专利号:ZL 201710131174.5

    [10] 李明川,张培磊,庄乔乔,刘晓鹏,一种用于铜基体表面的激光熔覆材料及其应用. (发明专利号:201710095635.8

    [11] 张培磊,蒋旗,卢庆华,史海川,于治水,一种用于对接及搭接工件装配的焊接夹具(实用新型专利号:ZL 201920616639.0):

    [12] 张培磊,魏杏茹,吴頔,李绍伟,卢庆华,闫华,于治水,一种超高硬度激光熔覆复合涂层材料及其制备方法,(发明专利号:ZL 201910257153.7

    [13] 张培磊,熊汪涛,一种铁基非晶激光熔覆涂层材料及其制备方法. (发明专利号:ZL 201910870590.6

    [14] 张培磊、吴希、何珊珊、李绍伟 、卢庆华、 闫华、 于治水. 弧焊机器人直线对接焊缝的轴向跟踪系统及方法,(发明专利号:ZL 201910289396.9

    [15] 张培磊,刘振宇,熊汪涛,于治水,闫华,卢庆华,一种用于镀锌钢的激光焊接方法.(发明专利号:ZL 202110709702.7


    公司产品情况:

    1、员工竞赛&获奖

    [1] 上海市优秀毕业生(2023年——凤军毅);

    [2] 上海市老员工新材料创新创意大赛一等奖(2022年——黄瀚轩);

    [3] bv1946伟德官网优秀毕业生(2022年——黄瀚轩);

    [4] bv1946伟德官网优秀毕业生(2023年——凤军毅);

    [5] 全国老员工英语翻译大赛三等奖(2021年——王力);

    [6] 第四届上海市智慧城市创意设计大赛省级二等奖(2022年——张微林)

    [7] 第九届中国国际 “互联网+”老员工创新创业大赛校级二等奖(2023年——张微林)

    [8] 全国老员工英语词汇挑战赛二等奖(2022年——刘庆永);

    2、研究生国家奖学金

    [1] 刘晓鹏,2015年;

    [2] 庄乔乔,2017年;

    [3] 李国进,2018年;

    [4] 蒋旗,2021年;

    [5] 凤军毅,2022年;(联合培养/指导)

    [6] 宋世杰,2023年;(联合指导)

    3、研究生读博深造

    [1] 刘晓鹏,上海大学;

    [2] 聂云鹏,南京航空航天大学;

    [3] 李明川,哈尔滨工业大学;

    [4] 何珊珊,韩国釜山大学;(联合指导)

    [5] 黄瀚轩,复旦大学;

    [6] 蒋旗,华南理工大学;

    [7] 凤军毅,华中科技大学;(联合培养/指导)

    [8] 贾志远,东南大学;

    [9] 王力,上海交通大学;(联合培养/指导

    [10] 刘庆永,华中科技大学;(联合指导)



  • 陈捷狮

    姓名:陈捷狮  职称:校聘教授

    指导研究方向:材料科学与工程

    通讯地址:上海市松江区区龙腾路333号

    电子邮箱:jschen@sues.edu.cncjshbb@163.com

    联系电话:18817862060


    教育及工作经历:

    2016.09 上海交通大学材料科学与工程  工学博士学位

    2019.01~2021.12 上海交通大学智能化焊接精密研究所博士后

    2022.01~2022.12 上海交通大学智能化焊接精密研究所访问研究员

    2022.08~2023.08 哈尔滨工业大学全国重点实验室国内访问学者

    2021.12~至今上海市激光智能制造及质量检测专业技术服务平台(省级)主要负责人

    2016.11~至今bv1946伟德官网伟德国际bevictor1946讲师、副教授、校聘教授/


    研究方向:

    (1)能源领域激光焊接、激光精密加工及装备智能化制造

    (2)电子信息产业半导体材料及封装领域

    (3)磁性材料成分设计及激光刻痕磁性

    (4)材料资质检测及焊接件应力、疲劳、腐蚀、数值模拟仿真等失效分析


    研究情况:

    作为项目负责人主持国家自然科学基金(面上/青年),上海市科委/教委项目,中国博士后科学基金国家重点实验室面上基金和企事业产学合作课题项目等20余项作为研究骨干参与国家科技部重点研发计划、中央军委装发部项目、国家自然科学基金面上、上海市科委地方高校能力建设项目、上海市科委专业技术服务平台、江苏省科技项目和企事业合作横向课题项目等10余项

     

    学术/社会兼职:

    (1)中国机械委员会焊接青年委员会委员,ICEPT2024封装材料与工艺技术委员;
    (2中国材料与试验标准团体委员会(CSTM电子组装材料技术委员会委员(TC03
    (3)中国机械工程学会高级会员,中国电子学会会员,上海焊接学会会员等;
    (4焊接杂志社第一届青年编委会委员,《电焊机》第九届焊接编委会委员;
    (5)国家自然基金、上海市科技厅等评审专家

    (6教育部学位与研究生教育发展中心,上海市教育部学位与研究生教育发展中心评审专家。


    论文信息:已发表相关论文80余篇,SCI收录60余篇,综述论文2篇,ESI高倍引论文4篇。

     

    专利著作:申请发明专利10项,授权发明专利4

     

    获奖信息:获得国际优秀论文2篇,行业优秀论文2篇,2023翡翠杰出人文奖等荣誉

     

    招生情况:近三年指导研究生获批国家留学基金(CSC2项,4名员工到国内外著名高校(QS200)继续深造、5名获国家研究生奖、上海市优毕等荣誉;每年招生名额3~4名,招生方向:材料科学与工程、机械、物理、化学、计算机、电子封装技术等工科方向,欢迎各位同学加入我们课题组。


  • 徐书生

    姓名:徐书生  职称:讲师,研究生导师

    指导研究方向:材料物理与化学

    通讯地址:上海市松江区龙腾路333号1607室

    电子邮箱:xushusheng@sues.edu.cn

    联系电话:

    教育经历:

    (1) 2014-9至2018-6, 上海交通大学, 电子科学与技术, 博士

    (2) 2011-9至2014-6, 昆明理工大学, 材料加工工程, 硕士

    (3) 2007-9至2011-6, 河北科技大学, 材料成型及控制工程, 学士

    工作经历:

      2018-12至现在, bv1946伟德官网, 伟德国际bevictor1946, 讲师

    研究方向:

      功能无机纳米材料的可控合成及其在能源(超电、锌离子电池)和电催化方面的应用

    研究情况:

      在J. Energy Chem.、Nano Res.、ACS Appl. Mater. Inter.和ChemSusChem等国际SCI期刊发表论文37篇,包括4篇ESI高被引前1%论文,其中第一作者/通讯作者17篇,总被引超1500次,H因子20,授权国家发明专利3项。2020年获得上海市青年科技英才“扬帆计划”,主持国家自然科学基金1项。

    学术/社会兼职:

      担任ACS Appl. Mater. Inter.、Chem. Eng. J.、Angewandte Chemie、 Nanotechnology等杂志审稿人

    论文信息:

    (1)Liu Ruiqi; Shi Xue-Rong*; Wen Yi; Shao Xiaoxuan; Su Chen; Hu Jing; Xu Shusheng*; Trimetallic synergistic optimization of 0D NiCoFe-P QDs anchoring on 2D porous carbon for efficient electrocatalysis and high-energy supercapacitor, Journal of Energy Chemistry, 2022, 74: 149-158.

    (2) Zhang Xiangrui; Sun Chunyan; Xu Shusheng*; Huang Mengru; Wen Yi; Shi Xue-Rong*; DFT-assisted rational design of CoMxP/CC (M = Fe, Mn, and Ni) as efficient electrocatalyst for wide pH range hydrogen evolution and oxygen evolution, Nano Research, 2022, 15(10): 8897-8907.  

    (3) Li Ruiqi; Xu Shusheng*; Shao Xiaoxuan; Wen Yi; Shi Xuerong*; Huang Liping; Hong Min; Hu Jing; Yang Zhi*; Defect-Engineered NiCo-S Composite as a Bifunctional Electrode for High-Performance Supercapacitor and Electrocatalysis, ACS Applied Materials & Interfaces, 2021, 13(40): 47717-47727.  

    (4) Xu Shusheng; Wang Peijie; Huang Mengru; Hong Min; Zhang Yan*; Su Chen; Shi Xue-Rong*; Rational design of 3D N-doped graphene with a holey structure as a bifunctional electrode for sensitive methyl parathion detection and supercapacitors,Dalton Transactions, 2022, 51(41): 15863-15872.

    (5) Wen Yi; Xu Shusheng*; Wang Peijie; Shao Xiaoxuan; Sun Xuecheng*; Hu Jing; Shi Xue-Rong*;Bimetallic FeCo phosphide nanoparticles anchored on N-doped carbon foam for wide pH hydrogen evolution reaction, Journal of Alloys and Compounds, 2023, 931(10): 167570.  

    (6) Shao Xiaoxuan; Xu Shusheng*; Wang Peijie; Wen Yi; Sun Xuecheng*; Hong Min; Wu Kaiwei; Shi Xue-Rong*; Carbon-incorporated bimetallic phosphide nanospheres derived from WFs as superior electrocatalysts for hydrogen evolution, Dalton Transactions, 2022, 51: 14517-14525.  

    (7) Huang Simin; Shi Xue-Rong*; Sun Chunyan; Zhang Xiangrui; Huang Mengru; Liu Ruiqi; Wang Hui; Xu Shusheng*; Template-controlled in-situ growing of NiCo-WF nanosheets on Ni foam with mixed linkers for high performance asymmetric supercapacitors,Applied Surface Science, 2022, 572: 151344.  

    (8) Duan Zhichang; Shi Xue-Rong*; Sun Chunyan; Lin Wensong; Huang Simin; Zhang Xiangrui; Huang Mengru; Yang Zhi; Xu Shusheng*; Interface engineered hollow Co3O4@CoNi2S4 nanostructure for high efficiency supercapacitor and hydrogen evolution, Electrochimica Acta, 2022, 412: 140139.  

    (9) Huang Mengru; Shi Xue-Rong*; He Xiaoying; Zhang Xiangrui; Gao Feng; Wang Peijie; Sun Chunyan; Xu Shusheng*; Zhang Min*; Electronically regulated FeOOH/c-NiWO4 with hierarchical sandwich structure as efficient electrode for oxygen evolution and hybrid supercapacitors, Electrochimica Acta, 2022, 427: 140884.

    (10) Xu Shusheng*; Liu Ruiqi; Shi Xuerong; Ma Yujie; Hong Min; Chen Xinwei; Wang Tao; Li Fangjie; Hu Nantao; Yang Zhi*; A dual CoNi WF nanosheet/nanotube assembled on carbon cloth for high performance hybrid supercapacitors, Electrochimica Acta, 2020, 342: 136124.

    (11) Xu Shusheng; Su Chen; Wang Tao; Ma Yujie; Hu Jun; Hu Jing; Hu Nantao; Su Yanjie; Zhang Yafei; Yang Zhi*; One-step electrodeposition of nickel cobalt sulfide nanosheets on Ni nanowire film for hybrid supercapacitor, Electrochimica Acta, 2018, 259: 617-625.  

    (12) Xu Shusheng; Wang Tao; Ma Yujie; Jiang Wenkai; Wang Shuai; Hong Min; Hu Nantao; Su Yanjie; Zhang Yafei; Yang Zhi*; Cobalt Doping to Boost the Electrochemical Properties of Ni@Ni3S2 Nanowire Films for High-Performance Supercapacitors, ChemSusChem, 2017, 10(20): 4056-4065.

    (13) Xu Shusheng; Li Xiaolin; Yang Zhi*; Wang Tao; Jiang Wenkai; Yang Chao; Wang Shuai; Hu Nantao*; Wei Hao; Zhang Yafei; Nanofoaming to Boost the Electrochemical Performance of Ni@Ni(OH)2 Nanowires for Ultrahigh Volumetric Supercapacitors, ACS Applied Materials & Interfaces, 2016, 8(41): 27868-27876. 

    专利著作:

    (1) 杨志; 徐书生; 胡南滔; 魏浩; 张亚非; 一种镍/氢氧化镍储能电极材料的电化学 制备方法, 2018-01-30, 中国, ZL201510649889.0.

    (2) 杨志; 徐书生; 王涛; 马玉洁; 胡南滔; 张亚非; 一种镍/钴掺杂二硫化三镍储能电极材料的制备方法, 2018-9-11, 中国, ZL201611247251.5.

    (3) 李庚泽; 徐书生; 梁炜; 林高生, 碳包覆镍基薄膜电极材料及其制备方法和应用, 2020-04-22, 中国, ZL202010323076.3.

    (4) 徐书生; 文艺; 史雪荣; 邵晓璇,以氮掺杂碳为基底的钴铁双金属磷化纳米颗粒及其制备方法和应用, 2022-03-31,CN202210326203.4.

    (5) 储浩; 徐书生; 叶景秋; 郑文飞; 张自梦, 金属有机框架衍生的钴铁双金属磷化物纳米球及其制备方法和应用, 2022-03-31,CN202210326200.0.



  • 徐培全

    姓名:徐培全  职称:教授,研究生导师

    指导研究方向:激光焊接、机器人焊接、机器视觉、人工智能

    通讯地址:bv1946伟德官网 松江校区 龙腾路333号1623室, 201620

    电子邮箱:pqxu@sues.edu.cn,Wechat: Shsjsuop,

    联系电话:021-67791204,Twitter: @peiquan2xu

    教育经历:

    2003-03至2006-09, 上海交通大学, 伟德国际bevictor1946, 博士,导师:姚舜教授

    2000-09至2003-02, 大连交通大学, 伟德国际bevictor1946, 硕士,导师:杨德新教授,董事长(1994-2005)

    1996-09至2000-07, 大连交通大学, 伟德国际bevictor1946, 学士

    1993-09至1996-07,黑龙江省宾县第一中学,高中

    工作经历:

    2012-12至现在, bv1946伟德官网, 伟德国际bevictor1946, 教授

    2018-10至2018-10, University of Alberta, 化学与材料系, 访问学者,导师:Prof. Leijun Li,Tenured Professor

    2012.03至2013.03, Utah State University, 机械与航空航天系, 访问学者,导师:Prof. Leijun Li,Tenured Professor

    2011.06至2011.09, HKUST, 机械与航空系, 访问学者,导师:张统一教授,ACS member

    2008.12至2012.12, bv1946伟德官网, 伟德国际bevictor1946, 副教授

    2006.09至2008.12, bv1946伟德官网, 伟德国际bevictor1946, 讲师

    研究方向:

    硬质合金的异质连接

    激光焊接

    机器人焊接

    人工智能

    纳米材料及表征

    机器视觉

    视觉理解与感知

    研究情况:

    国家自然科学基金项目,51475282,2015/01-2018/12,80万,结题,主持

    国家自然科学基金项目,51105240,2012/01-2014/12,26万,结题,主持

    bv1946伟德官网知识创新团队:2013/01-2014/12,40万,负责人

    bv1946伟德官网知识创新团队:2012/01-2013/12,13万,负责人

    上海市曙光学者,2013年,材料加工工程

    上海市晨光学者,2008年,材料加工工程

    上海市自然科学基金,10ZR1412900,2010/04-2012/03,10万,结题,主持。

    上海市“科技创新行动计划”自然科学基金面上项目,20ZR1422700,2020/07-2023/06,20万,在研,主持。

    上海东芙格尔冷锻制造有限公司,2020/06–2028/12,258万,在研,参与。

    国家自然科学基金面上项目,50775135,2018/01-2010/12,28万,结题,参与。

    上海市科委地方高校能力建设项目,13160501200,2013/01-2015/12,60万,结题,参与。

    上海市“科技创新行动计划”自然基金面上项目,19ZR1421200,2019/07-2022/06,20万,结题,参与。

    上海市科委攻关项目,061111034,2006/10-2008/09,50万,验收,参与。

    沈阳飞机工业(集团)有限公司,(13)CL-019,24.381万,验收,参与。

    上海昕沐化学科技有限公司,(18)CL-012,2018/08-2021/11,10万,验收,主持。

    上海东芙格尔冷锻制造有限公司,2006/12-2022/01,152万,验收,参与。

    上海格尔汽车科技发展有限公司,(17)CL-001,2006/12-2022/01,15万,验收,参与。

    安徽锦晟汽配有限公司, (15)CL-027,2015/11-2018/10,50万,验收,参与。

    学术/社会兼职:

    上海市焊接学会,上海市焊接协会

    自然科学基金等国家和市各类项目评审

    国家学位办、上海市学位办硕士论文评审

    共15个期刊的审稿

    企业技术工程师/顾问

    论文信息:

    [1]Shuyue Ma, Benben Li, Yifan Ma, Pengyu Zhang, Peiquan Xu*. Effect of brazing filler metals and welding parameters on laser welding-brazing joints of WC-Co to S1045. Metals, 2022, 12: 1780. SCI: WOS:000881230600001

    [2]Pengyu Zhang, Ji Wang, Feng Zhang, Peiquan Xu*, Leijun Li*, Boming Li. Design and analysis of welding inspection robot. Scientific Reports, 2022, 12: 22651.

    [3]Xiaonan Wang, Peiquan Xu*, Pengyu Zhang, Shuyu Ma. Preparation of electrode materials based on carbon cloth via hydrothermal method and their application in supercapacitors. Materials. 2021; 14(23):7148.

    [4]Ji Wang, Peiquan Xu*, Leijun Li*, Feng Zhang. DAssd-Net: A lightweight steel surface defect detection model based on multi-branch dilated convolution aggregation and multi-domain perception detection head. Sensors, 2023, 23(12), 5488.

    [5]Junyu Lin, Ji Wang, Chang Xu, Benben Li, Bin Chen, Peiquan Xu*, Leijun Li*. Pre-placed metal strip-based laser additive manufacturing on grade-5 titanium alloy: Effect of laser parameters and additive materials on formation, oxidation resistance and wear resistance. Metals, accepted

    [6]Ji Wang, Benben Li, Peiquan Xu*, Leijun Li*, Pengyu Zhang. A real-time and lightweight driver fatigue detection model using anchor-free and visual-attention mechanisms. IEEE Transactions on Intelligent Transportation Systems, under review.

    [7]Ji Wang, Benben Li, Peiquan Xu*, Leijun Li*. Weld seam defect detection based on self-attention, IEEE Transactions on Intelligent Transportation Systems, prepare to submit

    [8]马一帆,徐培全*,林俊宇. YG20/45钢激光熔钎焊焊缝界面显微组织与元素扩散研究,轻工机械,2022, 40(2): 34-39.

    [9]林俊宇,徐培全*,马一帆.激光功率对预置TA2熔丝增材制造显微组织的影响,热加工工艺,2023,52(22): 110-112+118.

    [10]林俊宇,徐培全*,马一帆.激光沉积预置TC4 线材的显微组织研究,轻工机械,2022, 40(3): 50-53+65.

    [11]嵇友迪,龚红英,贾星鹏,申晨彤,周志伟,徐培全*,廖泽寰.基于响应面与遗传算法的汽车油箱托盘仿真优化,塑性工程学报,2021, 28(12): 29-35.

    [12]施为钟,龚红英*,王斌,孙后青,赵小云,周志伟,申晨彤,贾星鹏.基于响应面法与NSGA-Ⅱ的汽车C柱零件成形质量多目标优化,塑性工程学报,2021, 28(8): 30-37.

    [13]申晨彤,龚红英*,尤晋,刘尚保,徐培全*,廖泽寰.基于DYNAFORM及响应面法的封头零件冲压成形及优化,塑性工程学报,2022, 29(1): 54-59.

    [14]Yun Zou; Binghui Ma; Haichao Cui; Fenggui Lu; Peiquan Xu*; Microstructure, wear, and oxidation resistance of nanostructured carbide-strengthened cobalt-based cladding layers on Invar alloys,Surface & Coating Technology,2020, 381: 125188.

    [15]Xiaonan Wang; Dongran Zhou; Peiquan Xu*; The WC-Co/Fe-Ni interface: effect of holding time on the microstructure, grain size and grain growth mechanism, Ceramics International, 2019, 45: 23320-23327.

    [16]Yuzhen Zhang; Peiquan Xu*; Chuangen Liu; Jiangwei Ren; Hongying Gong; The influence of carbides on the microstructure, grain growth, and oxidation resistance of nanostructured carbides-strengthened cobalt-based multi-track laser-cladding layers, Applied Surface Science, 2019, 469: 495-504.

    [17]Wei Li; Peiquan Xu*; Yueyue Wang; Yun Zou; Hongying Gong; Fenggui Lu; Laser synthesis and microstructure characterization of micro- and nano-structured WC reinforced Co-based cladding layers on titanium alloy, Journal of Alloys and Compounds, 2018, 749: 10-22.

    [18]Guotao Yin; Peiquan Xu*; Hongying Gong; Haichao Cui; Fenggui Lu; Effect of interlayer thickness on the microstructure and strength of WC-Co/Invar/316L steel joints prepared by fibre laser welding, Journal of Materials Processing Technology, 2018, 255: 319-332.

    专利著作:

    [1]马姝月(研究生),马一帆,林俊宇,张鹏宇,马炳辉,王晓楠,徐培全,杨尚磊,龚红英.用于硬质合金与钢异质连接的Cu/INVAR/Ni复合钎料及其激光熔钎焊工艺, 中国发明专利,申请号:202110822428.4, 申请日:2021.7.21.

    [2]龚红英,刘尚保,尤晋,申晨彤,徐培全,嵇友迪,贾星鹏,周志伟,姚志鑫.发明专利,一种PVDF水基复合润滑剂及其制备方法,申请号:202110405411.9, 申请日:2021.4.15.

    [3]林俊宇(研究生),张鹏宇,马姝月,马炳辉,王晓楠,徐培全,杨尚磊,龚红英.一种基于预置增材的钛合金激光增材制造方法, 中国发明专利,申请号:202110822371.8, 申请日:2021.7.21.

    [4]周林俊(本科生),张鹏宇,王晨雨,王维强,张峰,王骥,陈新睿,徐培全.巡检机器人,实用新型专利,申请号:202321423023.4,申请日:2023.6.6.

    [5]马姝月(研究生), 李奔奔, 王骥,张鹏宇,张峰,徐培全,龚红英,赵志远.一种添加稀土的合金钎料及制备方法,中国发明专利,申请号:202310451297.2,申请日:2023.4.24.

    [6]李奔奔(研究生),马姝月,马一帆,张鹏宇,张峰,王骥,徐培全,龚红英.一种耐高温的多元高熵合金钎料及制备方法,中国发明专利,申请号:202310448160.1,申请日:2023.4.24.

    获奖信息:

    1.2023年上海市优秀发明选拔赛银奖

    2.2018年度美国焊接学会Mckay Helm奖


  • 高 双

    姓名:高双  职称:副教授 硕士研究生导师

    指导研究方向:材料加工工程、材料学

    通讯地址:bv1946伟德官网行政楼1616室电子邮箱:gaoshuang_alloy@163.com

    联系电话:021-67791202


    教育经历:

    2018/10至今:bv1946伟德官网|材料公司|副教授

    2014/08-2018/01:中科院金属研究所|材料学|博士

    2011/09-2014/07:沈阳工业大学|材料工程|硕士

    2007/08-2011/07:沈阳工业大学|材料成型及控制工程|学士

    研究方向:

    金属激光增材制造研究

    镍基高温合金成分设计及组织性能优化

    微电子封装低温Sn-Bi合金钎料研究

    研究情况:

    主持2019年度上海市青年科技英才扬帆计划人才项目

    主持企业委托项目1

    参与国家自然科学基金面上项目2

    参与上海市科学技术委员会基础研究项目,面向复杂精细结构的金属增材制造

    参与中华人民共和国工业和信息化部,先进涡轮发动机热端部件绿色关键工艺系统集成


    代表性论文:

    [1] Gao S, et al. Effect of Ta on microstructural evolution and mechanical properties of a solid-solution strengthening cast Ni-based alloy during long-term thermal exposure at 700°C[J]. Journal of Alloys and Compounds, 2017, 729: 903-913.

    [2] Gao S, et al. Effects of tantalum on microstructure and mechanical properties of cast IN617 alloy[J]. Materials Science and Engineering: A, 2017.

    [3] Gao S, et al. Microstructural evolution and mechanical properties of solution annealed cast IN617B alloy during long-term thermal exposure[J]. Materials Science and Engineering: A, 2017, 704: 304-310.

    [4] Gao S, et al. Effect of Ta addition on solidification microstructure and element segregation of IN617B nickel-base superalloy[J]. Transactions of Nonferrous Metals Society of China, 2022, 32: 559-68.

    [5] Zhenfeng Song, Shuang Gao, Zhiqiang Wang, Liang Lan, jieshan Hou, and Bo He. Effects of non-equilibrium microstructures on microstructure evolution and mechanical properties of laser powder bed fusion IN625 Ni-based superalloy during long-term thermal exposure at 700 and 750°C[J]. Materials Science and Engineering: A. 2022, 856:1-10.

    [6] 宋振峰, 高双, 何博, 兰亮, 王江, 侯介山选区激光熔化IN625镍基高温合金长期热暴露组织及性能演变规律研究[J]. 中国激光 2022, 49(14): 342-351.

    [7] Shuang Gao, Zhijun Tan, Liang Lan, Bo He. Experimental Investigation and Numerical Simulation of Residual Stress and Distortion of Ti6Al4V Components Manufactured Using Selective Laser Melting[J]. Journal of Materials Engineering and Performance, 2022, 31(10): 8113-8123.

    [8] Zhijun Tan, Shuang Gao, Liang Lan, Bo He. Effect of Rescanning Strategy on Residual Stress and Distortion of Two Aloys Manufactured by Selective Laser Melting[J]. Journal of Materials Engineering and Performance, 2021, 6: 1-7.

    专利软著:

    (1)高双等; 一种增材制造和表面抛光同步加工方法及装置, 中国, CN201910169132.X(专利)

    (2)高双等; 一种基于增材制造技术制备梯度结构金属件的方法, 中国,CN201910233988.9(专利)

    (3)高双等; 一种电子東增材制造全等轴晶金属构件的方法, 中国, CN202110919218.7 (专利)


  • 郭隐犇

    姓名:郭隐犇 职称:副教授,研究生导师

    指导研究方向:材料物理化学

    通讯地址:上海市松江区龙腾路333号bv1946伟德官网

    电子邮箱:guoyb@sues.edu.cn

    联系电话:021-67791380

    教育经历:

    2014 ~ 2018博士 东华大学 材料学  

    2016 ~ 2017    访学 洛桑联邦理工(瑞士) 材料学

    2012 ~ 2014硕士 东华大学 生物工程(材料方向)

    2008 ~ 2012学士 东华大学 无机非金属材料科学与工程

    工作经历:

    2019年3月 bv1946伟德官网

    研究方向:

    •  用于摩擦纳米发电机的材料研发与器件制备

    •  有机-无机复合功能材料的制备及应用

    •  可穿戴电子器件的研究

    研究情况:

    1. 国家自然科学青年基金,51903151,金属有机框架材料基高性能摩擦纳米发电机的制备及其摩擦电荷产生、储存与捕获机制研究,2020/01-2022/12,22万,主持。

    2. 上海市“晨光计划”,19CG66,面向多功能高效摩擦纳米发电机的金属有机框架结构设计及其复合材料调控,2020/01-2022/12,6万,主持。

    论文信息:

    1.  Y. Zhang, Y. B. Guo, et al., Molecular-functionalized metal-organic frameworks enabling contact-electro-catalytic organic decomposition, Nano Energy, 2023, 111, 108433.

    2.  T. Kang, Y. B. Guo, et al., Multi-weather full-body triboelectric garments for personalized moisture management and water energy acquisition, Nano Energy, 2023, 110, 108359.

    3.  Yule Cao,Y. B. Guo, et al., Highly sensitive self-powered pressure and strain sensor based on crumpled MXene film for wireless human motion detection, Nano Energy, 2022, 92, 106689. (工程技术一区)

    4.  Z.X. Chen, Y.L. Cao, Y. B. Guo, et al., Embedding in-plane aligned MOF nanoflakes in silk fibroin for highly enhanced output performance of triboelectric nanogenerator. Journal of Materials Chemistry A, 2022, 10, 799-807.(工程技术一区)

    5.  Y. B. Guo, H. Z. Wang, Q. H. Zhang, et al. Multifunctional Mechanical Sensing Electronic Device Based on Triboelectric Anisotropic Crumpled Nanofibrous Mats, ACS Applied Materials & Interfaces, 2021, 13, 55481-55488. (工程技术一区)

    6.  Y. B. Guo, Zixi Chen, Hongzhi Wang, et al. Progress of inorganic filler based composite films for triboelectric nanogenerators, Journal of Inorganic Materials, 2021, 36, 919-928. (工程技术三区)

    7.  Y. B. Guo, Y. Cao, Z. Chen, et al. Fluorinated metal-organic framework as bifunctional filler toward highly improving output performance of triboelectric nanogenerators, Nano Energy, 2020, 70, 104517. (工程技术一区, IF = 15.548)

    专利著作:

    1. 郭隐犇,陈子曦等,基于蚕丝蛋白和二维金属有机框架材料复合薄膜及摩擦纳米发电机的制备放法和应用,专利号:ZL202111445766.7

    2. 陈佳豪,郭隐犇等,基于褶皱结构MXene薄膜的摩擦纳米发电机及其制备方法,中国发明专利,专利号:ZL202110347845.8

    3. 郭隐犇,陈子曦等,摩擦纳米发电机用PVDF@KUAST-8纳米纤维复合薄膜及其制备方法,中国发明专利,专利号:ZL201911368971.0

  • 鲁 娜

    姓名:鲁娜  职称:研究员,硕士研究生导师

    指导研究方向:微纳传感

    通讯地址:上海市松江区龙腾路333号

    电子邮箱:nlu2014@163.com

    联系电话:021-67791000

    教育经历:

    2004-2009   中国科学技术大学           博士     导师:邓兆祥 教授

    2010-2012   中科院上海应用物理研究所       博士后    导师:樊春海 院士

    工作经历:

    2012-2015   中科院上海微系统与信息技术研究所  副研究员   传感技术联合国家重点实验室

    2016-至今   bv1946伟德官网            研究员    伟德国际bevictor1946

    研究方向:

    微纳传感,疾病早期检测 

    研究情况:

    目前发表SCI论文40余篇,其中以第一或通讯作者在JACS、Chemical Engineering Journal等权威学术杂志发表SCI论文20余篇。SCI他引1500余次,ESI高被引论文2篇。授权发明专利8项。作为项目负责人先后主持了科技部国家重点研发计划课题、国家自然科学基金面上项目、国家自然科学基金青年项目、上海市自然科学基金面上项目等。获上海市高校特聘教授(DFXZ)岗位计划、上海市“科技创新行动计划”优秀学术带头人(青年)计划项目等。

    科研项目

    1.基于功能化硅纳米线传感器的肿瘤早期检测研究,国家自然科学基金面上项目,81974317, 54万元,2020.1-2023.12主持,在研

    2.上海高校特聘教授(DFXZ)岗位计划,上海市教委,100万元,2021.1-2023.12主持,在研

    3.上海市“科技创新行动计划”优秀学术带头人(青年)计划  上海市科委 40万元 2021.9-2024.8 主持,在研。

    4.基于无酶信号放大技术的高灵敏多通道硅纳米线核酸传感器的构建及其应用研究,上海科学基金面上项目,2017.05-2020.04,主持,结题。

    学术/社会兼职:

    《分析试验室》第一届青年编委

    论文信息:

    1.Zhihang Zhao, Xuerong Shi, Zhiwei Shen, Yue Gu, Liang He, Min Zhang*, Na Lu*. Single-atom Fe nanozymes coupling with atomic clusters as superior oxidase mimics for ratiometric fluorescence detection Chemical Engineering Journal2023, 469, 143923.

    2.Ruohong Yan, Na Lu*, Suping Han, Zhanglu Lu, Yang Xiao, Zhihang Zhao, Min Zhang. Simultaneous Detection of Dual Biomarkers Using Hierarchical MoS2 Nanostructuring and Nano-Signal Amplification-Based Electrochemical Aptasensor toward Accurate Diagnosis of Prostate Cancer. Biosensors & Bioelectronics 2022, 197, 113797.

    3.Rui Zhang, Na Lu*, Jiaxing Zhang, Ruohong Yan, Jie Li, Lihua Wang, Na Wang, Min Lv*, Min Zhang*. Ultrasensitive Aptamer-Based Protein Assays Based on One-Dimensional Core-Shell Nanozymes. Biosensors & Bioelectronics2020, 150, 111881.(ESI高被引论文)

    4.Na Lu, Min Zhang*, Lei Ding, Jing Zheng, Caixia Zeng, Yanli Wen, Gang Liu, Ali Aldalbahi, Jiye Shi, Shiping Song, Xiaolei Zuo, Lihua Wang*. Yolk-Shell Nanostructured Fe3O4@C Magnetic Nanoparticles with Enhanced Peroxidase-Like Activity for Label-Free Colorimetric Detection of H2O2 and Glucose. Nanoscale 2017,9(13), 4508-4515.(ESI高被引论文)

    5.Na Lu, Hao Pei, Zhilei Ge, Chad R. Simmons, Hao Yan*, Chunhai Fan*. Charge Transport within a Three-Dimensional DNA Nanostructure Framework Journal of the American Chemical Society2012, 134, 13148.

    授权发明专利:  

    1.鲁娜,张敏,曾彩霞,王建平,苗腾,张佳星. 四氧化三铁担载负镍碳化层纳米管及其制备方法和应用[P]. 专利号:ZL201810102269.9, 权公告日:2020-11-20.  

    2.张敏,鲁娜,王建平,曾彩霞,苗腾,张锐. 四氧化三铁基复合碳纳米管模拟酶及其制备方法和应用[P]. 专利号:ZL201810102270.1,授权公告日:2020-11-27.  

    3.曾彩霞,鲁娜,张敏,王娜,张锐,张佳星. 一种负镍碳化层包覆四氧化三铁的核壳纳米棒及其制备方法和应用[P]. 专利号:ZL201811496226.X,授权公告日:2021-07-02.   

    4.张佳星,鲁娜,张敏,张锐,曾彩霞,史雪荣. 一种pH/H2O2双重敏感性智能水凝胶及其制备方法和应用,专利号:ZL201811348998.9,授权公告日:2021-08-27.  

    5.张锐,鲁娜,张敏,王娜,曾彩霞,张佳星,史雪荣. Fe3O4@C一维纳米线的应用, 专利号:ZL201811497684.5,授权公告日:2021-09-24.