杜春雨,男,1975年10月出生,中国铅酸蓄电池标准化委员会委员,国际电化学学会会员。他的研究领域涵盖化学电源(燃料电池、锂离子电池等)、电化学以及纳米材料。[1]
教育经历
时间院校专业学位1994年-1998年哈尔滨工业大学电化学工程学士1998年-2000年哈尔滨工业大学应用化学硕士2001年-2004年哈尔滨工业大学环境科学与工程博士2006年-2007年香港科技大学-博士后
工作经历
2000.7-2003.6哈尔滨工业大学应用化学系助教。
2003.7-2007.10哈尔滨工业大学应用化学系讲师。
2003.12-2004.03 作为访问学者在日本信州大学进行学术交流。
2007.11-2012.12哈尔滨工业大学化工学院副教授。
2009.5-至今哈尔滨工业大学化工学院博士生导师。
2013.1-至今哈尔滨工业大学化工学院教授。
学术成果
先后参与完成多项国家级、省部级和横向科研课题,包括国家自然科学基金项目、863项目、973项目、黑龙江省自然科学基金项目、海军装备部项目、市重点攻关项目以及多项企业横向课题等。主持和承担国家自然科学基金、863计划、黑龙江省科技攻关重点项目、哈尔滨市科技创新人才基金、哈工大科研创新基金等多项课题。入选哈工大首届优秀青年教师培养计划。发表学术论文40余篇,被SCI和EI收录20余篇。申请多项发明专利。
在研项目
主持国家自然科学基金2项,哈尔滨市科技创新人才基金1项,哈工大科研创新基金1项,企业横向课题2项。
参与863计划、海军装备部项目、横向课题多项。
代表性著作
《化学电源工艺学》,哈工大出版社,2006年。
《化学电源》,化工出版社,2008年。
代表论文
燃料电池、纳米材料:
1.Q. Tan, C.Y. Du, Y.R. Sun, L. Du, G.P. Yin, Y.Z. Gao, Nickel-doped ceria nanoparticles for promoting catalytic activity of Pt/C for ethanol electrooxidation. J. Power Sources. 2014, 236, 310。2.Q. Tan, C.Y. Du, Y.R. Sun, G.P. Yin, Y.Z. Gao,Pd-around-CeO2-x hybrid nanostructure catalyst: three-phase-transfer synthesis, electrocatalytic properties and dual promoting mechanism. J. Mater. Chem. A, 2014, 2,1429。3.L. Du, S. Zhang, G.Y. Chen, G.P. Yin,C.Y. Du, Q. Tan, Y.R. Sun, Y.T. Qu, Y.Z. Gao, Polyelectrolyte assisted synthesis and enhanced oxygen reduction activity of Pt nanocrystals with controllable shape and size. ACS Appl. Mater. Inter. 2014, 6(16), 14043。4.N. Zhang, S. Zhang, C.Y. Du, Z.B. Wang, Y.Y. Shao, F.D. Kong, Y.H. Lin, G.P. Yin, Pt/Tin Oxide/Carbon nanocomposites as promising oxygen reduction electrocatalyst with improved stability and activity. Electrochim. Acta. 2014, 117(20), 413。5.C.Y. Du, M. Chen, W.G. Wang, Q. Tan, K. Xiong, G.P. Yin, Platinum-based intermetallic nanotubes with a core-shell structure as highly active and durable catalysts for fuel cell applications. J. Power Sources. 2013, 240(15), 630。6.D.J. Zhao, S. Zhang, G.P. Yin, C.Y. Du, Z.B. Wang, J. Wei, Tungsten doped Co-Se nanocomposites as an efficient non precious metal catalyst for oxygen reduction. Electrochim. Acta. 2013, 91(28), 179。7.Y. Gu, C.T. Liu, J. Gao, K. Wang, Y.R. Sun, C.Y. Du, Effects of microwave power on performance of Pt/CeO2/MWCNTs catalysts prepared by microwave-assisted polyol process for methanol electrooxidation. Materials design, progress and applications. 2013, (690-693), 1500。8.Q. Tan, C.Y. Du, G.P. Yin, P.J. Zuo, X.Q. Cheng, M. Chen, Highly efficient and stable nonplatinum anode catalyst with Au@Pd core–shell nanostructures for methanol electrooxidation. J. Catal. 2012, 295, 217。9.C.T. Liu, C. Meng, C.Y. Du, J. Zhang, G.P. Yin, P.F. Shi, Y.R. Sun, Durability of ordered mesoporous carbon supported Pt particles as catalysts for direct formic acid fuel cells. Int. J. Electrochem. Sci. 2012, 7, 10592.10.L.H. Xing, Z.B. Wang, C.Y. Du, G.P. Yin, The influence of anode diffusion layer on the performance of direct dimethyl ether fuel cell. Int. J. Energ. Res. 2012, 36(7), 886。11.L.H. Xing, G.P. Yin, Z.B. Wang, S. Zhang, Y.Z. Gao, C.Y. Du, Investigation on the durability of direct dimethyl ether fuel cell. Part I: Anode degradation. J. Power Sources. 2012, 198(15), 170。12.F.D. Kong, S. Zhang, G.P. Yin, Z.B. Wang, C.Y. Du, G.Y. Chen, N. Zhang, Electrochemical studies of Pt/Ir-IrO2 electrocatalyst as a bifunctional oxygen electrode. Int. J. Hydrogen Energ. 2012, 37(1), 6759。13.F.D. Kong, S. Zhang, G.P. Yin, N. Zhang, Z.B. Wang, C.Y. Du, Pt/porous-IrO2 nanocomposite as promising electrocatalyst for unitized regenerative fuel cell. Electrochem. Commun. 2012, 14(1), 63。14.F.D. Kong, S. Zhang, G.P. Yin, N. Zhang, Z.B. Wang, C.Y. Du, Preparation of Pt/Irx(IrO2)10-x bifunctional oxygen catalyst for unitized regenerative fuel cell. J. Power Sources. 2012, 210(15), 321。15.D.J. Zhao, S. Zhang, G.P. Yin, C.Y. Du, Z.B. Wang, J. Wei, Effect of Se in Co-based selenides towards oxygen reduction electrocatalytic activity. J. Power Sources. 2012, 206(15), 103。16.C.Y. Du, M. Chen, W.G. Wang, G.P. Yin, Nanoporous PdNi alloy nanowires as highly active catalysts for the electro-oxidation of formic acid. ACS Appl. Mater. Inter. 2011, 3(2), 105。17.M. Chen, C.Y. Du, J. Zhang, P.P. Wang, T. Zhu, Effect, mechanism and recovery of nitrogen oxides poisoning on oxygen reduction reaction at Pt/C catalysts. J. Power Sources. 2011, 196(2), 620.18.T. Zhu, C.Y. Du, C.T. Liu、G. P. Yin, P. F. Shi, SiO2 stabilized Pt/C cathode catalyst for proton exchange membrane fuel cells. Appl. Surf. Sci. 2011, 257(6), 2371。19.L.H. Xing, Y.Z. Gao, Z.B. Wang, C.Y. Du, G.P. Yin, Effect of anode diffusion layer fabricated with mesoporous carbon on the performance of direct dimethyl ether fuel cell. Int. J. Hydrogen Energ. 2011, 36(17), 11102。20.C.Y. Du , M. Chen, W.G. Wang, G.P. Yin, P.F. Shi, Electrodeposited PdNi2 alloy with novelly enhanced catalytic activity for electrooxidation of formic acid. Electrochem. Commun. 2010, 12(6), 843.21.G.J. Wang. Y.Z. Gao, Z.B. Wang, C.Y. Du, J. J. Wang, G.P. Yin, Investigation of PtNi/C anode。electrocatalysts for direct borohydride fuel cell. J. Power Sources. 2010, 195(1), 185。22.G. J. Wang, Y. Z. Gao, Z. B. Wang, C. Y. Du, G.P. Yin, A membrane electrode assembly with high fuel coulombic efficiency for passive direct borohydride fuel cells. Electrochem. Commun. 2010, 12(8), 1070。
1.H. Liu, C. Chen, C. Y. Du, X. S. He ,G.P. Yin, B. Song, P.J. Zuo, X.Q. Cheng , Y.L. Ma, Y.Z. Gao,Lithium-rich Li 1.2 Ni 0.13 Co0.13 Mn0.54 O 2 oxide coated by Li3PO4 and carbon nanocomposite layers as high performance cathode materials for lithium ion batteries J. Mater. Chem. A, 2015, 3,2634-2641。2.Y. Z. Cui, C. Y. Du,G.P. Yin,Y.Z. Gao, L. L. Zhang, T. Guan, L. J. Yang, F.P. Wang. Multi-stress factor model for cycle lifetime prediction of lithium ion batteries with shallow-depth discharge. J. Power Sources. 2015, 279, 123–132。3.G.Y. Cheng, P.J. Zuo, L.G. Wang, W. Shi, Y.L. Ma, C.Y. Du, X.Q. Cheng, Y.Z. Gao, G.P. Yin, High-performance carbon-coated LiMnPO4 nanocomposites by facile two-step solid-state synthesis for lithium-ion battery. J Solid. State. Electr. 2015, 19(1), 281。4.L.G. Wang, P.J. Zuo, G.P. Yin, Y.L. Ma, X.Q. Cheng, C.Y. Du, Y.Z. Gao, Improved electrochemical performance and capacity fading mechanism of nano-sized LiMn0.9Fe0.1PO4 cathode modified by polyacene coating. J. Mater. Chem. A. 2015, 3(4), 1569。5.H. Liu , C.Y. Du , G.P. Yin, B. Song, P.J. Zuo, X.Q. Cheng , Y.L. Ma, Y.Z. Gao, An Li-rich oxide cathode material with mosaic spinel grain and a surface coating for high performance Li-ion batteries. J. Mater. Chem. A 2014, 2(37), 15640。6.L.J. Yang, X.Q. Cheng, Y.Z. Gao, Y.L. Ma, P.J. Zuo, C.Y. Du, Y.Z.Cui, T.Guan, S.F. Lou, F.P. Wang, W.D.Fei, G.P. Yin, Lithium deposition on graphite anode during long-term cycles and the effect on capacity loss. RSC Adv. 2014, 4(50), 26335。7.L.J. Yang, X.Q. Cheng, Y.Z. Gao, P.J. Zuo, Y.L. Ma, C.Y. Du, B. Shen, Y.Z. Cui, T. Guan, G.P. Yin, Lithium compound deposition on mesocarbon microbead anode of lithium ion batteries after long-term cycling. ACS Appl. Mater. Inter. 2014, 6(15), 12962。。8.L.L. Zhang, Y.L. Ma, C.Y. Du, G.P. Yin, Research on the high-voltage electrolyte for lithium ion batteries.Process. Chem. 2014, 26(4), 553。9.T. Guan, P.J Zuo, S. Sun, C.Y. Du, L.L. Zhang, Y.Z. Cui, L. J. Yang, Y.Z. Gao, G.P.Yin, F.P.Wang, Degradation mechanism of LiCoO2/mesocarbon microbeads battery based on accelerated aging tests. J. Power Sources. 2014, 268, 816。10.L.L. Zhang, Y.L. Ma, X.Q. Cheng, P.J Zuo, Y.Z. Cui, T. Guan, C.Y. Du, Y.Z. Gao, G.P. Yin, Enhancement of high voltage cycling performance and thermal stability of LiNi1/3Co1/3Mn1/3O2 cathode by use of boron-based additives. J. Power Sources. 2014, 263,146。11.M. Chen, C.Y. Du, B. Song, K. Xiong, G.P. Yin, P.J. Zuo , X.Q. Cheng, High-performance LiFePO4 cathode material from FePO4 microspheres with carbon nanotube networks embedded for lithium ion batteries. J. Power Sources. 2013, 223, 100。12.P.J. Zuo, T. Wang, G.Y. Cheng, C.Y. Du, Y.L. Ma, X.Q. Cheng, G.P. Yin, Improved electrochemical performance of nano-crystalline Li2FeSiO4/C cathode material prepared by the optimization of sintering temperature. J. Solid. State. Electr. 2013, 17(7), 1955。13.P.J. Zuo, G.Y. Cheng, L.G. Wang, Y.L. Ma, C.Y. Du, X.Q. Cheng, Z.B. Wang, G.P. Yin, Ascorbic acid-assisted solvothermal synthesis of LiMn0.9Fe0.1PO4/C nanoplatelets with enhanced electrochemical performance for lithium ion batteries. J. Power Sources. 2013, 243, 872。14.M. Chen, C.Y. Du , L. Wang, P.F. Shi, Silicon/Graphite/Polyaniline nanocomposite with improved lithium-storage capacity and cyclability as anode materials for lithium-ion batteries. Int. J. Electrochem. SC. 2012, 7(1), 819。15.P.J. Zuo, T. Wang, G.Y. Cheng, X.Q. Cheng, C.Y. Du, G.P. Yin, Effects of carbon on the structure and electrochemical performance of Li2FeSiO4 cathode materials for lithium-ion batteries. RSC Adv. 2012, 2(17), 6994。16.F. Yang, K. Cheng, X.L. Liu, S. Chang, J.L. Yin, C.Y. Du, L. Du, G.L. Wang, D.X. Cao, Direct peroxide-peroxide fuel cell - Part 2: Effects of conditions on the performance. J. Power Sources. 2012, 217, 569.17.Y.X. An, P.J. Zuo, C.Y. Du, Y.L. Ma, X.Q. Cheng, J.Y. Lin, G.P. Yin, Effects of VC-LiBOB binary additives on SEI formation in ionic liquid-organic composite electrolyte. RSC Adv. 2012, 2(10), 4097。18.C.Y. Du, C.H. Gao, G.P. Yin, M. Chen, L. Wang, Facile fabrication of a nanoporous silicon electrode with superior stability for lithium ion batteries. Energ. Environ. Sci. 2011, 4(3), 1037。19.C.Y. Du, M. Chen, L. Wang, G.P. Yin, Covalently-functionalizing synthesis of Si@C core-shell nanocomposites as high-capacity anode materials for lithium-ion batteries. J. Mater. Chem. 2011, 21(39), 15692。
代表专利
1.杜春雨,刘辉,尹鸽平,程新群,左朋建,马玉林,高云智,一种具有快离子导体包覆层和表面异质结构的富锂锰基正极材料及其制备方法,ZL201410175169.0。2.杜春雨,陈桂林,尹鸽平,左朋建,程新群,马玉林,高云智,一种锂离子电池负极材料的结构及其制备方法,ZL201410161007.1。3.杜春雨,陈猛,宋柏,尹鸽平,史鹏飞,一种掺杂碳纳米材料球形磷酸铁及球形磷酸铁锂的制备方法,ZL201110418138.X。4.杜春雨,程新群,尹鸽平,史鹏飞,王振波,左朋建,用于聚合物电解质膜燃料电池的气体扩散层及其制备方法,ZL200810137131.9。
主讲课程
| 课程 | 授课对象 |
|---|---|
| 化学电源工艺学 | 本科生 |
| 现代电化学 | 硕士生 |
| 电化学科学与工程中的计算机方法 | 硕士生 |
| 电化学前沿创新实验 | 硕士生 |
参考资料:[2]
社会职务
杜春雨是中国铅酸电池标准化委员会委员,中国材料学会储能与动力电池材料委员会委员,中国化学与物理电源行业协会电池专家委员会委员,中国电动汽车计量技术委员会委员,《高校化学工程学报》编委会委员,《ISRN Corrosion》编委,《化学计量与分析》编委,《锂电世界》编委。
参考资料:[2]
获得荣誉
参考资料 3
- 杜春雨 - — 哈尔滨工业大学教师个人主页
- 杜春雨 — 哈尔滨工业大学教师个人主页
- 2020年度国家科学技术进步奖获奖项目目录(通用项目) — 中华人民共和国科学技术部