张鹏
1985年3月生,籍贯山西运城
博士,教授
广州大学“百人计划”引进青年杰出人才
广州大学大湾区环境研究院界面微观过程与水净化研究所
Email:pengzhang85@foxmail.com
通讯地址:广州市大学城外环西路230号
教育及工作背景
2020年11月—今 广州大学大湾区环境研究院,教授
2012年12月—2020年11月 江苏大学新材料研究院,助理研究员、副研究员
2017年11月—2019年11月 澳大利亚悉尼大学物理系,博士后,导师:Catherine Stampfl 教授
2007年9月—2012年12月 吉林大学材料学院,材料学专业,硕博连读,导师:蒋青教授
2003年9月—2007年7月 吉林大学材料学院,金属材料工程专业,本科
主持项目
国家自然科学基金青年基金(21403092)
中国博士后面上项目一等资助(2014M550270)
中国博士后特别资助(2015T80506)
研究领域
主要从事新能源相关的表/界面催化的第一原理研究(理论计算),涉及的反应包括氧还原反应、析氧反应、二氧化碳还原、氮还原等,涉及的材料包括石墨烯、 碳纳米管、二维 MOF 材料、二硫化钼、分子筛等。
发表论文
1. P. Zhang, Z. Wang, L. Liu,* L. H. Klausen, Y. Wang, J. Mi, M. Dong,* Modulation the electronic property of 2D monolayer MoS2 by amino acid. Appl. Mater. Today 2019, 14, 151-158. (ESI 高被引论文,影响因子:8.013)
2. P. Zhang, X. Yang, X. Hou,* J. Mi, Z. Yuan, J. Huang,* C. Stampfl,* Active sites and mechanism of the direct conversion of methane and carbon dioxide to acetic acid over the zinc-modified H-ZSM-5 zeolite. Catal. Sci. Technol. 2019, 9, 6297.(影响因子:5.726)
3. P. Zhang, X. J. Yang, W. Gao, X. L. Hou, J. L. Mi, L. Liu, J. Huang,* M. D. Dong,* C. Stampfl,* First-principles design of bifunctional oxygen reduction and evolution catalysts through bimetallic centers in metal-organic frameworks. Catal. Sci. Technol. 2018, 8, 3666. (影响因子:5.726)
4. L. P. Yang, J. L. Mi,* J. H. Liang, Z. Y. Zu, P. Zhang,* Copper-carbon: An efficient catalyst for oxygen reduction, ACS Appl. Energy Mater. 2019, 2, 6295-6301.
5. P. Zhang, B. B. Xiao, X. L. Hou, Y. F. Zhu,* Q. Jiang,* Layered SiC sheets: A potential catalyst for oxygen reduction reaction. Sci. Rep. 2014, 4, 3821. (影响因子:4.011)
6. S. Chen, J. L. Mi,* P. Zhang,* Y. H. Feng, Y. C. Yong, W. D. Shi, Control synthesis of nickel selenides and their multiwalled carbon nanotubes composites as electrocatalysts for enhanced water oxidation. J. Phys. Chem. C 2018, 122, 26096-26104. (影响因子:4.309)
7. P. Zhang, X. L. Hou, L. Liu, J. L. Mi,* M. D. Dong,* Two-dimensional π-conjugated metal bis(dithiolene) complex nanosheets as selective catalysts for oxygen reduction reaction. J. Phys. Chem. C 2015, 119, 28028-28037. (影响因子:4.309)
8. P. Zhang, X. F. Chen, J. S. Lian, Q. Jiang,* Structure selectivity of CO oxidation on Fe/N/C catalysts. J. Phys. Chem. C 2012, 116, 17572-17579. (影响因子:4.309)
9. P. Zhang, W. T. Zheng, Q. Jiang,* Behaviors of monomer H2O on the Cu(111) surface under surface charges. J. Phys. Chem. C 2010, 114, 19331-19337. (影响因子:4.309)
10. P. Zhang, X. Yang, X. Hou, X. Xu, B. Xiaonei, J.Huang, C. Stampfl, Metal-bipyridine complexes as electrocatalysts for the reduction of CO2: A density functional theory study . Phys. Chem. Chem. Phys. 2019, 21, 23742-23748. (影响因子:3.567)
11. X. L. Hou, P. Zhang,* S. Li, W. Liu,* Enhanced electrocatalytic activity of nitrogen-doped olympicene/graphene hybrids for the oxygen reduction reaction. Phys. Chem. Chem. Phys. 2016, 18, 22799-22804. (影响因子:3.567)
12. P. Zhang, X. L. Hou,* J. L. Mi, Y. Q. He, L. Lin, Q. Jiang, M. D. Dong,* From two-dimension to one-dimension: the curvature effect of silicon-doped graphene and carbon nanotubes for oxygen reduction reaction. Phys. Chem. Chem. Phys.2014, 16, 17479-17486. (影响因子:3.567)
13. P. Zhang, J. S. Lian, Q. Jiang,* Potential dependent and structure selectivity of the oxygen reduction reaction on nitrogen-doped carbon nanotubes: A density functional theory study. Phys. Chem. Chem. Phys. 2012, 14, 11715-11723. (影响因子:3.567)
14. X. Yang, Q. Hu, X. Hou,* J. Mi, P. Zhang,* Oxygen reduction reaction on M3(hexaiminobenzene)2: A density function theory study. Catal. Commun. 2018, 115, 17-20. (影响因子:3.674)
15. J. J. Yang, J. L. Mi,* X. J. Yang, P. Zhang,* L. N. Jin, L. H. Li, Z. Ao, Metal-organic framework derived N/C supported austenite nanoparticles as efficient oxygen reduction catalysts. ChemNanoMat 2019, 5, 525-530. (影响因子:3.431)
16. P. Zhang, Q. Hu, X. J. Yang, X. L, Hou,* J. L, Mi, L. Liu, M. D. Dong,* Size effect of oxygen reduction reaction on nitrogen-doped graphene quantum dots. RSC Adv. 2018, 8, 531-536. (影响因子:3.049)
17. P. Zhang, X. L. Hou,* J. L. Mi, Q. Jiang, H. Aslanb, M. D. Dong,* Curvature effect of SiC nanotubes and sheets for CO2 capture and reduction. RSC Adv. 2014, 4, 48994-48999. (影响因子:3.049)
18. Y. Q. He, P. Zhang,* X. L. Hou, J. J. Xu, M. Q. Wang, Y. S. Wu, J. C. Qu, M. D. Dong,* Adjusting the electronic properties of silicon carbide nanoribbons by introducing edge functionalization. RSC Adv. 2014, 4, 35042-35047. (影响因子:3.049)
19. X. Hou, Q. Hu, P. Zhang,* J. Mi,* Oxygen reduction reaction on nitrogen-doped graphene nanoribbons: A density functional theory study. Chem. Phys. Lett. 2016, 663, 123-127. (影响因子:1.901)
20. P. Zhang,* X. L. Hou, Y. Q. He, Q. M. Peng,* M. D. Dong,* The effects of surface group functionalization and strain on the electronic structures of two-dimensional silicon carbide. Chem. Phys. Lett. 2015, 628, 60-65. (影响因
子:1.901)
21. P. Zhang, X. L. Hou,* J. L. Mi, L. Liu, M. D. Dong,* Oxygen reduction reaction on M-S4 embedded graphene: A density functional theory study. Chem. Phys. Lett.2015, 641, 112-116. (影响因子:1.901)
22. P. Zhang, X. Hou, S. Li, D. Liu, M. Dong, Curvature effect of O2 adsorption and dissociation on SiC nanotubes and nanosheet. Chem. Phys. Lett. 2015, 619, 92-96.(影响因子:1.901)