主要成果 |
论文: 1. Catalytic mechanism of oxygen reduction on two types of CoN4-graphene: A density functional study.Jing Zhang, Junyu Yang, Yan Wang, Haiqiang Lu, Mingang Zhang, International Journal of Energy Research, 2021,45, 10858-10868. 2. Adsorption of acetylene on Sn-doped Ni(111) surfaces: a density functional study.Jing Zhang, Junyu Yang, Lihong Cheng,Yan Wang, Gang Feng, Journal of Molecular Modeling, 2020, 26, 310-317. 3. Catalytic Activity for Oxygen Reduction Reaction on CoN2 Embedded Graphene: A Density Functional Theory Study.Jing Zhang, Yan Wang, Yuanyang Wang, Mingang Zhang, Journal of The Electrochemical Society, 2017, 164 (12), F1122-F1129. 4. Electrochemical oxygen reduction mechanism on FeN2-graphene,Jing Zhang, Yuanyang Wang, Zhenping Zhu, MinGang Zhang, Journal of Molecular Modeling, 2017, 23, 170-178. 5. Catalytic Activity for Oxygen Reduction Reaction on CoN2-Graphene: A Density Functional Theory Study,Jing Zhang, Lijuan Liu, Wen Liu, and Mingang Zhang, J. Electrochem. Soc. 2016, 163(3), F160-F165. 6. A Density Functional Theory Study on Mechanism of Electrochemical Oxygen Reduction on FeN3-Graphene,Zhang Jing, Wang Zhen and Zhu Zhenping J. Electrochem. Soc. 2015, 162(10), F1262-F1267. 7. Density Functional Theory Study on Mechanism of Electrochemical Oxygen Reduction on FeN4-Graphene,Zhang Jing, Wang Zhen, Zhu Zhenping,Wang Quan J. Electrochem. Soc. 2015, 162(7), F796-F801. 8. The inherent kinetic electrochemical reduction of oxygen into H2O on FeN4-carbon: A density functional theory study,Jing Zhang, Zhijian Wang,Zhenping Zhu, Journal of Power Sources, 2014, 255, 65-69. 9. Self-assembly of CNH nanocages with remarkable catalytic performance,Jing Zhang, Zhijian Wang,Li Li, Jianghong Zhao, Jianfeng Zheng, Huijuan Cui, Zhenping Zhu,Journal of Materials Chemistry A. 2014, 2(22), 8179-8183. 10. A density functional theory study on oxygen reduction reaction on nitrogen-doped graphene,Jing Zhang, Zhijian Wang, Zhenping Zhu, Journal of Molecular Modeling, 2013, 19(12), 5515-5521. 11. Adsorption of carbon monoxide on Pd(210) and (510) surfaces,Jing Zhang, Zhen Wang,Surface and Interface Analysis, 2012, 44, 1249-1253, 2012. 12. DFT Study on the Structural, Electronic, and Spectroscopic Properties of the Highest Epoxygenated Fullerene C36O18,Zhang Jing,Wang Zhen, Chinese J. Struct. Chem. 2012, 31(10), 1409-1416. 13. Adsorption of carbon monoxide on Pd low-index surfaces and (110) reconstructed surface,Jing Zhang, Zhen Wang, Zexin Wang,Surface and Interface Analysis,2011, 43, 1038-1045. 14. Adsorption of carbon monoxide on Pd(311) and (211) surfaces,Jing Zhang, Xuena Zhang, Zexin Wang, Zhaoyu Diao,Applied Surface Science, 2008, 254, 6327-6331. 15. H原子在W低指数面上的吸附位和吸附态,张静,于艳杰,王泽新,秦伟娜,刁兆玉,郝策,化学学报2007,65,785-792. 16. Adsorption and Vibration of Cl Atoms on Ni Low-index Surfaces,Jing Zhang, Zhaoyu Diao, Zexin Wang, Chem.Res.Chinese U. 2006, 22(3), 1-4. 17. Adsorption and Diffusion of Hydrogen Atom on Low-index Ag Planes,Jing Zhang, Zhaoyu Diao, Zexin Wang, 结构化学2005,24卷,10期,1217-1223. 18. 氯原子在Ag低指数面上的吸附位和吸附态,张静,刁兆玉,王泽新,丰慧,郝策,化学学报2005,63卷,14期,1276-1280。 专著: 氮杂碳纳米材料催化氧还原反应机理及性能研究,化学工业出版社,2023。 |