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上海交通大学机械与动力工程学院导师教师师资介绍简介-沈水云

本站小编 Free考研考试/2021-01-01


沈水云 副教授
所在系所燃料电池研究所
办公电话021-3420 7594
通讯地址上海交大机械与动力工程学院A楼221室
电子邮件shuiyun_shen@sjtu.edu.cn
个人主页http://me.sjtu.edu.cn/sz_minglu/showDetail.aspx?cid=4&id=570


教育背景 2008 - 2012 香港科技大学,机械工程专业博士
2006 - 2008 哈尔滨工业大学,化学工程与技术专业硕士
2002 - 2006 哈尔滨工业大学,化学工程与技术专业学士

工作经历 2019 - 至今 上海交通大学机械与动力工程学院,燃料电池研究所,副教授
2014 - 2018 上海交通大学机械与动力工程学院,燃料电池研究所,讲师
2012 - 2013 香港科技大学,机械工程系,博士后

研究方向 电催化、纳米材料、质子交换膜燃料电池、锂离子电池、锂-空气电池

科研项目 2017 - 2018 上海汽车工业科技发展基金会产学研课题“高活性特殊结构PtNi氧还原催化剂可控合成及其衰减机理研究”,负责人
2016 - 2021 国家重点研发计划“新能源汽车”试点专项课题“低铂膜电极CCM关键制备技术的研究与开发”,负责人
2016 - 2018 国家自然科学基金青年项目“基于4d/5d结构过渡金属Pt-M合金催化剂的合成及其氧还原电催化活性和稳定性研究”,负责人
2015 - 2017 上海市青年科技英才“扬帆计划”项目“有机体系中电化学可控制备Pt合金催化剂机理的探讨及氧还原性能研究”,负责人
2014 - 2017 上海交通大学新进青年教师科研启动基金,负责人
2013 - 2015 上海交大青年人才科研能力培育专项,负责人
2017 - 2018 某企业项目“大功率燃料电池电堆—膜电极开发”,研究骨干
2016 - 2020 国家自然科学基金重点项目“燃料电池超低铂阴极的结构设计及动力学和传质机理研究” ,研究骨干

代表性论文专著 1.S.Y. Shen, Y. Zhang, G.H. Wei, W.S. Zhang, X.H. Yan, G.F. Xia, A.M. Wu, C.C. Ke, J.L. Zhang, Li2FeSiO4/C hollow nanospheres as cathode materials for lithium-ion Batteries, Nano Research, 2018, in press.
2.S.Y. Shen, A.M. Wu, G.F. Xia, G.H. Wei, X.H. Yan, Y. Zhang, F.J. Zhu, J.W. Yin, J.L. Zhang, Facile preparation of unique three-dimensional (3D) α-MnO 2/MWCNTs macroporous hybrid as the high-performance cathode of rechargeable Li-O 2 batteries, Nano Research, 2018, in press.
3.S.Y. Shen, F. Li, L.T. Zhao, C.H. Fu, G.H. Wei, L.J. Yang, J.L. Zhang, An Organic Solvent System-Assisted Electrodeposition of Highly Active Pt for the Oxygen Reduction Reaction, Journal of the Electrochemical Society, 2018, 165(15), J3392-J3394.
4.S.Y. Shen, Y.G. Guo, G. H. Wei, L.X. Luo, F. Li, L. Li, G.F. Xia, J.L. Zhang, An exploration of Au submonolayer decorated Pd7Ir nanoparticles as highly active electrocatalyst for ethanol oxidation reaction in alkaline media, Catalysis Science & Technology, 2018, 8, 3465-3468.
5.S.Y. Shen, G.Y. Guo, G.H. Wei, L.X. Luo, F. Li, J.L. Zhang, A perspective on the promoting effect of Ir and Au on Pd toward the ethanol oxidation reaction in alkaline media. Frontiers in Energy, 2018, 12(4): 501-508.
6.S.Y. Shen, F. Li, L.X. Luo, Y.G. Guo, X.H. Yan, C.C. Ke, J.L. Zhang, DMF-Coordination Assisted Electrodeposition of Highly Active PtCo Alloy Catalysts for the Oxygen Reduction Reaction, Journal of The Electrochemical Society, 2018, 165(2), D43-D49.
7.S.Y. Shen, Y.G. Guo, L.X. Luo, F.Li, L.Li, G.H. Wei, J.W. Yin, C.C. Ke, J.L. Zhang, Comprehensive Analysis on the Highly Active and Stable PdAu/C Electrocatalyst for Ethanol Oxidation Reaction in Alkaline Media, The Journal of Physical Chemistry C, 2018, 122 (3), pp 1604–1611.
8.S.Y. Shen, X.J. Cheng, C. Wang, X.H. Yan, C.C. Ke, J.W. Yin and J.L. Zhang, Exploration of significant influences of the operating conditions on the local O2 transport in proton exchange membrane fuel cells (PEMFCs), Physical Chemistry Chemical Physics, 2017, 19 (38), 26221-26229.
9.S.Y. Shen and T.S. Zhao, One-step polyol synthesis of Rh-on-Pd bimetallic nanodendrites and their electrocatalytic properties for ethanol oxidation in alkaline media, Journal of Materials Chemistry A, 2013, 1 (3), 906-912.
10.S.Y. Shen and T.S. Zhao, Product analysis of the ethanol oxidation on palladium-based catalysts in an anion-exchange membrane fuel cell environment, International Journal of Hydrogen Energy, 2012, 37 (1), 575-582.
11.S.Y. Shen, T.S. Zhao and J.B. Xu, High performance of carbon supported ternary PdIrNi catalyst for ethanol electro-oxidation in anion-exchange membrane direct ethanol fuel cells, Energy & Environmental Science, 2011, 4 (4), 1428-1433.
12.S.Y. Shen, T.S. Zhao, J.B. Xu and Y.S. Li, Synthesis of PdNi catalysts for the oxidation of ethanol in alkaline direct ethanol fuel cells, Journal of Power Sources, 2010, 195 (4), 1001-1006.
13.S.Y. Shen, T.S. Zhao, J.B. Xu and Y.S. Li, Carbon-supported PtRh catalysts for ethanol oxidation in alkaline direct ethanol fuel cells, International Journal of Hydrogen Energy, 2010, 35 (23), 12911-12917.
14.S.Y. Shen, T.S. Zhao and J.B. Xu, Carbon supported bimetallic PdIr catalysts for ethanol oxidation in alkaline media, Electrochimica Acta, 2010, 55 (28), 9179-9184.
15.A.M. Wu, S.Y. Shen, X.H. Yan, G.F. Xia, Y. Zhang, F.J. Zhu, J.L. Zhang, CxNy particles@ N-doped porous graphene: a novel cathode catalyst with a remarkable cyclability for Li-O2 batteries. Nanoscale, 2018, 10, 12763-12770.
16.R.X. Tian, S.Y. Shen, F.J. Zhu, L.X. Luo, X.H. Yan, G.H. Wei, J.L. Zhang, Sandwich-structured Icosahedral PtNi Alloy Nanocrystalline Electrocatalyst: from the Growth Mechanism to its Oxygen Reduction Activity, ChemSusChem, 2018, 11 (6), 1015-1019.
17. Y.Zhang, W.S. Zhang, S.Y. Shen, X.H. Yan, A.M. Wu, J.L. Zhang, Hollow porous bowl-shaped lithium-rich cathode materials for lithium-ion batteries with exceptional rate capability and stability, Journal of Power Sources, 2018, 380, 164-173.
18. M.R. Asghar, Y. Zhang, A.M. Wu, X.H. Yan, S.Y. Shen, J.L. Zhang, Preparation of microporous Cellulose/PVDF-HFP membrane for lithium ion batteries by phase inversion method. Journal of Power Sources, 2018, 379, 197-205.
19. M.T. Anwar, X.H. Yan, S.Y. Shen, N.Husnain, F.J. Zhu, L.X. Luo, J.L. Zhang, Enhanced durability of Pt electrocatalyst with tantalum doped titania as catalyst support, International Journal of Hydrogen Energy, 2017.
20.C. Wang, X.J. Cheng, J.B. Lu, S.Y. Shen, X.H. Yan, J.W. Yin, G.H. Wei and J.L. Zhang, The experimental measurement of local and bulk oxygen transport resistances in the catalyst layer of proton exchange membrane fuel cells, The Journal of Physical Chemistry Letters, 2017, 8(23), pp 5848–5852.
21.Y. Zhang, W.S. Zhang; S.Y. Shen, X.H. Yan, A.M. Wu, R.F. Wu and J.L. Zhang, An ingenious design of lamellar Li1.2Mn0.54Ni0.13Co0.13O2 hollow nanosphere cathode for advanced lithium-ion batteries, Electrochimica Acta, 2017, 256, 316-324.
22.C. Wang, Q.L. Zhang, J.B. Lu, S.Y. Shen, X.H. Yan, F.J. Zhu, X.J. Cheng and J.L. Zhang, Effect of height/width-tapered flow fields on the cell performance of polymer electrolyte membrane fuel cells, International Journal of Hydrogen Energy, 2017, 42 (36), 23107-23117.
23.L.X. Luo, F.J. Zhu, R.X Tian, L. Li, S.Y. Shen, X.H. Yan, and J.L. Zhang, Composition-graded PdxNi1-x nanospheres with Pt monolayer shells as high-performance electrocatalysts for oxygen reduction reaction, ACS Catalysis, 2017, 7 (8), 5420-5430.
24.W.K. Li, Q.L. Zhang, C. Wang, X.H. Yan, S.Y. Shen, G.F. Xia, F.J. Zhu and J.L. Zhang, Experimental and numerical analysis of a three-dimensional flow field for PEMFCs, Applied Energy, 2017, 195, 278-288.
25.C. Wang, Q.L. Zhang, S.Y. Shen, X.H. Yan, F.J. Zhu, X.J. Cheng and J.L. Zhang, The respective effect of under-rib convection and pressure drop of flow fields on the performance of PEM fuel cells, Scientific Report, 2017, 7, 43447.
26. A.M. Wu, G.F. Xia, S.Y. Shen, J.W. Yin, Y. Mao, Q.Y. Bai, J.Y. Xie and J.L. Zhang, Recent progress in non-aqueous lithium-air batteries, Acta Physico-Chimica Sinica, 2016, 32 (8), 1866-1879.
27. R.F. Wu, S.Y. Shen, G.F. Xia, F.J. Zhu, C. Lastoskie, and and J.L. Zhang, Soft-templated self-assembly of mesoporous anatase TiO2/carbon composite nanospheres for high-performance lithium ion batteries, ACS Applied Materials & Interfaces, 2016, 8 (31), 19968-19978.
28.Y.Q. Meng, C. Wang, Q.L. Zhang, S.Y. Shen, F.J. Zhu, H. Yang, and and J.L. Zhang, The effects of cathode platinum loading and operating backpressure on PEMFC performance, Acta Physico-Chimica Sinica, 2016, 32 (6), 1460-1466.
29. L.X. Luo, S.Y. Shen, F.J. Zhu, H. Yang, and and J.L. Zhang, formic acid oxidation by Pd monolayers on Pt3Ni nanocubes, Acta Physico-Chimica Sinica, 2016, 32 (1), 337-342.
30.G.F. Xia, S.Y. Shen, F.J. Zhu., J.Y. Xie, Y.F. Hu, K. Zhu and J.L. Zhang, Effect of oxygen-containing functional groups of carbon materials on the performance of Li-O-2 batteries, Electrochemistry Communications, 2015, 60, 26-29.
31.R.F. Wu, G.F. Xia, S.Y. Shen, F.J. Zhu, F.J. Jiang and J.L. Zhang, In-situ growth of LiFePO4 nanocrystals on interconnected carbon nanotubes/mesoporous carbon nanosheets for high-performance lithium ion batteries, Electrochimica Acta, 2015, 153, 334-342.
32.Z. Cui, C. Wang, S. Y. Shen, F. J. Jiang and J. L. Zhang, Pt/C modified proton exchange membrane for improved fuel cell performance, Journal of Electrochemistry 2015, (3), 273-278.
33.C.Y. Hu, D.P. Yang, F.J. Zhu, F.J. Jiang, S.Y. Shen and J.L. Zhang, Enzyme-labeled Pt@BSA nanocomposite as a facile electrochemical biosensing interface for sensitive glucose determination, ACS Applied Materials & Interfaces, 2014, 6 (6), 4170-4178.
34. R.F. Wu, G.F. Xia, S.Y. Shen, F.J. Zhu, F.J. Jiang and J.L. Zhang Soft-templated LiFePO4/mesoporous carbon nanosheets (LFP/meso-CNSs) nanocomposite as the cathode material of lithium ion batteries, RSC Advances, 2014, 4 (41), 21325-21331.
35.Q.X. Wu, S.Y. Shen, Y.L. He and T.S. Zhao, Effect of water concentration in the anode catalyst layer on the performance of direct methanol fuel cells operating with neat methanol, International Journal of Hydrogen Energy, 2012, 37 (7), 5958-5968.
36.Y.S. Li, T.S. Zhao, J.B. Xu, S.Y. Shen and W.W. Yang, Effect of the cathode micro-porous layer on performance of anion-exchange membrane direct ethanol fuel cells, Journal of Power Sources, 2011, 196 (4), 1802-1807.
37.L. An, T.S. Zhao, S.Y. Shen, Q.X. Wu and R. Chen, An alkaline direct oxidation fuel cell with non-platinum catalysts capable of converting glucose to electricity at high power output, Journal of Power Sources, 2011, 196 (1), 186-190.
38.T.S. Zhao, Y.S. Li and S.Y. Shen, Anion-exchange membrane direct ethanol fuel cells: status and perspectives, Frontiers of Energy and Power Engineering, 2010, 4 (4), 443-458.
39.J.B. Xu, T.S. Zhao, S.Y. Shen and Y.S. Li, Stabilization of the palladium ethanol-oxidation electrocatalyst with alloyed gold, International Journal of Hydrogen Energy, 2010, 35 (13), 6490-6500.
40.J.B. Xu, T.S. Zhao, W.W. Yang and S.Y. Shen, Effect of surface composition of Pt-Au alloy cathode catalyst on the performance of direct methanol fuel cells, International Journal of Hydrogen Energy, 2010, 35 (16), 8699-8706.
41.L. An, T.S. Zhao, S.Y. Shen, Q.X. Wu and R. Chen, Performance of a direct ethylene glycol fuel cell with an anion-exchange memebrane, International Journal of Hydrogen Energy, 2010, 35 (9), 4329-4335.
42.Z.H. Wang, K.N. Sun, S.Y. Shen, X.L. Zhou, J.S. Qiao and N.Q. Zhang, Effect of co-sintering temperature on the performance of SOFC with YSZ electrolyte thin films fabricated by dip-coating method, Journal of Solid State Electrochemistry, 2010, 14 (4), 637-642.
43.Z.H. Wang, K.N. Sun, S.Y. Shen, X.L. Zhou, N.Q. Zhang, J.S. Qiao and P. Xu, Preparation of YSZ thin films for intermediate temperature solid oxide fuel cells by dip-coating method, Journal of Membrane Science, 2008, 320 (1-2), 500-504.

教学工作 课程名称:燃料电池技术,授课对象:本科生。

软件版权登记及专利 1. 章俊良,夏国锋,沈水云,朱凤鹃,吴若飞,解晶莹,毛亚,一种片状多孔纳米材料的制备方法,2017/08, 中国发明专利,1.4。
2. 章俊良,朱凤鹃,沈水云,夏国锋,吴若飞,一种碳载纳米铂合金催化剂的制备方法,2017/07, 中国发明专利,ZL9.2。
3. 章俊良,朱凤鹃,夏国锋,沈水云,胡宸溢,一种碳载纳米铂合金催化剂的制备方法,2017/05, 中国发明专利,ZL1.2。
4. 章俊良,罗柳轩,朱凤娟,胡宸溢,沈水云,李琳,田仁秀,球形核壳状PdxNi1?x@Pt/C催化剂及其制备,2017/03, 中国发明专利,0.6。
5. 章俊良,王超,程晓静,张卿雷,沈水云,罗柳轩,胡宸溢,朱凤鹃,测量燃料电池催化层中氧气有效扩散系数的方法,2017/01, 中国发明专利,6.7。
6. 章俊良,王超,张卿雷,程晓静,沈水云,朱凤鹃,胡宸溢,罗柳轩,亲水/疏水复合型多层膜电极及其制备方法,2016/12, 中国发明专利,2.2。
7. 殷洁炜,章俊良,夏国锋,沈水云,朱凤鹃 ,干氢测试条件下的质子交换膜燃料电池单电池测试装置,2016/12, 中国发明专利,9.3。
8. 章俊良,吴爱明,夏国锋,吴若飞,沈水云,张尧,朱凤鹃,锂空气电池多孔隔膜材料的制备方法,2016/12, 中国发明专利,1.9。
9. 章俊良,符策煌,吴若飞,沈水云,夏国锋,张尧,吴爱明,朱凤鹃,多孔碳支撑的四氧化三锰纳米颗粒复合材料及其制备方法,2016/11, 中国发明专利,8.1。
10. 章俊良,张尧,吴若飞,吴爱明,沈水云,夏国锋,殷洁炜,空心球状纳米结构的三元正极材料及其制备方法,2016/10, 中国发明专利,6.5。
11. 章俊良,吴若飞,夏国锋,沈水云,符策煌,吴爱明,张尧,朱凤鹃,石墨烯支撑的碳包覆硅纳米颗粒复合电极材料的制备方法,2016/10, 中国发明专利,7.7。
12. 章俊良,夏国锋,蒋峰景,吴若飞,沈水云,朱凤娟,三维多孔材料的制备方法,2015/10, 中国发明专利,7.4。
13. 章俊良,朱凤鹃,夏国锋,沈水云,胡宸溢,一种碳载纳米铂合金催化剂的制备方法,2015/05, 中国发明专利,1.2。
14. 章俊良,朱凤鹃,沈水云,夏国锋,吴若飞,一种碳载纳米铂合金催化剂的制备方法,2015/05, 中国发明专利,9.2。
15. 章俊良,朱凤鹃,罗柳轩,沈水云,夏国锋,一种碳固载纳米铂催化剂的制备方法,2015/04, 中国发明专利,0.5。

荣誉奖励 2017年度教职工考核优秀
2016年度教职工考核优秀
2016年本科招生工作先进个人
2016年度上海交通大学优秀班主任
2015年度“李兰馨青年教师奖”

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