
冯振,男,1988年7月生,河南民权人,博士,讲师,国际焊接工程师(IWE),河南工学院新能源材料与器件专业教师。主要研究新型材料成型技术以及新型材料的光、电、磁特性,主持、参与国家自然科学基金、省自然科学基金、省重点科研项目、教育装备项目等10项,在Journal of Materials Chemistry A,Applied Surface Science,Molecular Catalysis,Physical Chemistry Chemical Physics,Journal of Materials Science,Nanotechnology,Materials & Design等刊物发表论文50余篇,其中SCI论文26篇。为Journal of Materials Chemistry A,Nature Communications,ACS Applied Materials & Interfaces,Materials & Design等多个期刊的审稿人。
基本情况
2018年9月-2021年7月 河南师范大学物理学(新能源材料)专业博士;
2011年9月-2014年7月 兰州理工大学材料加工工程专业硕士;
2007年9月-2011年7月 河南理工大学材料成型及控制工程专业本科。
科研方向
新型材料的光、电、磁性能;新型能源材料的设计;新型材料的先进成型技术。
课程教学
新能源材料、实验设计与方法、传递过程原理、文献检索与论文写作、专业英语、先进连接技术、弧焊电源等。
承担项目
1.国家自然科学基金,BAs与金属半导体相互作用的研究,主要参与人;
2.河南省高等学校重点科研项目,石墨炔/过渡金属异质结构的界面特性及其对二氧化碳还原的协同机制,河南省教育厅,主持;
3.新乡市科技攻关计划项目,氨燃料电池中碳基非贵金属电极的作用机制及特性调控,主持;
4.河南省教育厅教育技术装备和实践教育研究项目,冷金属过渡焊接方法的适用性,主持。
荣誉奖励
1.河南省教育厅科技成果奖优秀科技论文奖二等奖;
2.中国物理学会2019年秋季学术会议优秀墙报奖;
3.江苏省研究生功能纳米材料科学创新论坛优秀墙报奖;
4.博士研究生国家奖学金;
5.河南师范大学第十四届卢锦梭奖学金;
6.河南师范大学第九届研究生“学术活动月”学术之星。
代表性论文
1.Zhen Feng,et al,Two-dimensional metal–organic framework Mo3(C2O)12 as a promising single-atom catalyst for selective nitrogen-to-ammonia conversion, Journal of Materials Chemistry A, 2022, 10, 4731-4738.(IF=14.511,一区)
2.Zhen Feng,et al,Electrochemical nitrogen reduction reaction on the precise number of Mo atoms anchored biphenylene, Molecular Catalysis, 2022, 530, 112579.(IF=5.089,二区)
3.Zhen Feng,et al,Tuning lattice strain in biphenylene for enhanced electrocatalytic oxygen reduction reaction in proton exchange membrane fuel cells, International Journal of Hydrogen Energy, accepted. 13 September 2022,(IF=7.139,二区)
4.Zhen Feng, et al,BN cluster doped graphdiyne as visible-light driven metal-free catalysts for CO2reduction reaction, Nanotechnology, 2020, 31, 495401.(IF=3.55,二区)
5.Zhen Feng, et al,Theoretical evaluation of electrocatalytic CO2reduction reaction on N (B)-doped graphdiyne supported single copper atom, Applied Surface Science, 2021, 538, 148145(IF=5.155,二区)
6.Zhen Feng, et al,Theoretical study of CO2reduction and hydrogen evolution reactions performance on Cu1-3@graphdiyne core-shell catalysts,International Journal of Hydrogen Energy, 2021, 46, 5378-5389.(IF=4.939,二区)
7.Zhen Feng,et al,Magnetic and electronic properties of two-dimensional metal-organic frameworks TM3(C2NH)12, Chinese Physics B, 2021, 30, 9, 097102(IF=1.494,三区)
8.Zhen Feng, et al,O-doped graphdiyne as metal-free catalysts for nitrogen reduction reaction, Molecular Catalysis, 2020, 483, 110705(IF=3.687,二区)
9.Zhen Feng, et al,Charge-compensated co-doping of graphdiyne with boron and nitrogen to form metal-free electrocatalysts for oxygen reduction reaction, Physical Chemistry Chemical Physics, 2020, 22, 1493-1501(IF=3.43,二区)
10.Zhen Feng, et al,Two-dimensional halogen-substituted graphdiyne: first-principles investigation of mechanical, electronic, optical, and photocatalytic properties, Journal of Materials Science, 2020, 55: 8220-8230(IF=3.553,二区)
11.Zhen Feng, et al,Graphdiyne coordinated transition metals as single-atom catalysts for nitrogen fixation, Physical Chemistry Chemical Physics, 2020, 22: 9216-9224.(F=3.43,二区)
12.Zhen Feng, et al,Atomic alkali metal anchoring on graphdiyne as single-atom catalysts for capture and conversion of CO2to HCOOH, Molecular Catalysis, 2020, 494, 111142.(IF=3.687,二区)
13.Zhen Feng,et al,Oxygen molecule dissociation onheteroatom doped graphdiyne, Applied Surface Science, 2019, 494, 421-429(IF=5.155,二区)
14.ZhenFeng, et al,Graphdiyne doped withsp-hybridized nitrogen atoms at acetylenic sites as potential metal-free electrocatalysts for oxygen reduction reaction, Journal of Physics: Condensed Matter, 2019,31,465201(IF=2.711,二区)
15.Zhen Feng, et al,Molecule-level graphdiyne coordinated transition metals as new class of bifunctional electrocatalysts for oxygen reduction and oxygen evolution reactions, Physical Chemistry Chemical Physics, 2019, 21, 19651-19659(IF=3.567,二区)
16.ZhenFeng, et al,Importance of heteroatom doping site in tuning the electronic structure and magnetic properties of graphdiyne, Physica E: Low-dimensional Systems and Nanostructures, 2019,114, 113590(IF= 3.176,三区)
17.R. Cao (导师),Z. Feng, et al. Microstructures and properties of titanium-copper lap welded joints by cold metal transfer technology. Materials & Design, 2014, 53: 192-201 (IF=6.28,一区)
18.R. Cao (导师),Z. Feng, et al. Study on cold metal transfer welding-brazing of titanium to copper. Materials & Design, 2014, 56: 165-173 (IF=6.28,一区)
联系方式
通讯地址:河南省新乡市红旗区河南工学院教学5号楼309室,邮编:453000。
联系电话:13462360890(VX同)。
电子信箱:fengzhen@hait.edu.cn。