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[1]L. Deng, D.Y. Zhang*, Y. Liu and C.K. Chang, Electrochemical performance of nanosized LiCoPO4 cathode materials for rechargeable batteries, Materials Research Innovations, 2 (2014) 15
[2]Yongqiang Wang, Dongyun Zhang*, Chengkang Chang, Lin Deng, Kejun Huang, Low-cost synthesis of nanocrystalline and spherical LiFePO4/C composite, Materials Research Innovations, (in press)
[3]Yongqiang Wang, Dongyun Zhang*, Chengkang Chang*, Lin Deng, Kejun Huang, Controllable growth of LiFePO4 microplates of (010) and (001) lattice planes for Li ion batteries: A case of the growth manner on the Li ion diffusion coefficient and electrochemical performance, Materials Chemistry and Physics, 148 (2014), pp. 933-939
[4]Mingming Shi, Dongyun Zhang*, Chengkang Chang, Tunable emission and concentration quenching of Tb3+ in lithium magnesium phosphate, J. Alloys Compounds, (accepted)
[5]Yan Liu, Xiaogang Zhang, Chengkang Chang, Dongyun Zhang, Ying Wu, Promotive effect of multi-walled carbon nanotubes on Co3O4 nanosheets and their application in lithium-ion battery, Progress in Natural Science: Materials International, 24, 184-190, 2014
[6]Yan Liu, Chengkang Chang, Dongyun Zhang, Ying Wu, Improved electrochemical properties by lithium insertion into Co3O4 in aqueous LiOH solution, Progress in Natural Science: Materials International, 23(6), 593-597, 2013
[7]王永强、章冬云、刘艳、邓玲、史运伟、常程康,磷酸锰锂正极材料的可控合成与电化学性能研究,上海应用技术学院学报,13(4),201-205,2013
[8]Meng-Nan Chen, Dong-Yun Zhang, Levi T. Thompson, Zi-Feng Ma, Pd促进ZnO/Al2O3催化乙醇水蒸气重整制氢,物理化学学报, 27(9),2185-2190,2011。
[9]吴曦、章冬云、蒋淇忠、马紫峰,球形团聚物模型在质子交换膜燃料电池过程模拟中的应用,《化工学报》,61(10),2694-2702,2010。
[10]章冬云,吴曦,马紫峰, Levi T. Thampson,基于碳化钼的燃料电池阴极催化剂制备及其作用机理研究,催化学报, 30(4),319-322,2009。
[11]Hui-Juan Zhang, Xianxia Yuan, Wen Wen, Dong-Yun Zhang, Liangliang Sun, Qi-Zhong Jiang, Zi-Feng Ma*, Electrochemical performance of a novel CoTETA/C catalyst for the oxygen reduction reaction, Electrochemistry Communications, 11,pp 206-208, 2009
[12]Dong-Yun Zhang, Zi-Feng Ma, Guoxiu Wang, Jun Chen, Gorden C. Wallace, Hua-Kun Liu, Preparation of low loading Pt/C catalyst by carbon xerogel method for ethanol electrooxidation, Catalysis Lettters, 122(1-2), 111-114, 2008.
[13]D.-Y. Zhang, Z.-F. Ma, G. Wang, K. Konstantinov, X. Yuan, H.-K. Liu, Electro-oxidation of Ethanol on Pt-WO3/C Electrocatalyst, Electrochemical and Solid-State Letter, 9 (9), A423-A426, 2006.
[14]章冬云,马紫峰,原鲜霞,乙醇电催化氧化反应动力学分析与研究进展,化工进展, 24(2),126-131,2005。
[15]马紫峰,章冬云, 氢电混合燃料电池汽车动力系统技术(特约评论),电源技术, 32(6),357-360, 2008。
[16]邓选英,章冬云,王昕, 原鲜霞, 马紫峰,碳纳米管负载金属卟啉电催化剂制备及其催化活性, 催化学报, 29(6),519-523 ,2008。
[17]Hui-Juan Zhang, Xianxia Yuan, Wen Wen, Dong-Yun Zhang, Liangliang Sun, Qi-Zhong Jiang, Zi-Feng Ma*, Electrochemical performance of a novel CoTETA/C catalyst for the oxygen reduction reaction, Electrochemistry Communications, 11, 206–208, 2009.
[18]Z.-F. Ma, X.-Y. Xie, X.-X. Ma, D.-Y. Zhang, Q. Ren, N. Heß-Mohr, V.M. Schmidt, Electrochemical characteristics and performance of CoTMPP/BP oxygen reduction electrocatalysts for PEM fuel cell, Electrochemistry Communications, 8, 389-394, 2006.
[19]Z.W. Zhao, Z.P. Guo, J. Ding, D. Wexler, Z.F. Ma, D.Y. Zhang, H.K. Liu, Novel ionic liquid supported synthesis of platinum-based electrocatalysts on multiwalled carbon nanotubes, Electrochemistry Communications, 8 (2), 245-250, 2006.