
陈军,博士,副教授,河南科技学院继续教育学院副院长。研究方向:水污染控制化学,高级催化氧化复合新材料的制备与应用,功能材料。Email: [email protected]。
一、教育经历
2009.09—2023.06 博士,湖南农业大学
2001.09—2004.06 硕士,湖南农业大学
1996.09—1999.06 专科,长江大学
二、工作经历
2006.04至今 副教授,硕士生导师,河南科技学院,PG电子下载(中国)官方网站
2004.07—2007.07 讲师,河南科技学院,PG电子下载(中国)官方网站
三、近年代表性论文(第一作者)
1. Chen, J., Zhang, Y. Y., Wang, J. C., Zhang, W. Q., & Zhang, Y. Hydrothermal nanoarchitectonics of NiFe layered double hydroxides/FeOOH/graphene oxide composite electrode for enhancement of electrochemical performance. Applied Clay Science, 2025, 278, 107997.
2. Chen, J., Hao, S. L., Zhang, L. L., Ma, H. R., Wu, Z. L., Huang, C., Li, Y., Liu, J. J., & Wang, J. C. Synergistic effect of photothermal-assisted photocatalysis and S-scheme heterojunction in MnO/BiOI towards efficient pollutants degradation. Journal of Environmental Chemical Engineering, 2025, 13 (6), 119239.
3. Chen, J., Jing, X., Wang, J. C., Zhang, W. Q., & Zhang, Y. Enhanced Electrochemical Performance of NiMn Layered Double Hydroxides/Graphene Oxide Composites Synthesized by One-Step Hydrothermal Method for Supercapacitors. Chemistry – A European Journal, 2024, 30(55), 202402269.
4. Chen, J., Wang, B. X., Wang, J. C., & Zhang, Y. C.. Development of a new high-performance visible-light photocatalyst by modifying tin disulfide with cyclized polyacrylonitrile. Materials Letters, 2023, 330, 133353.
5. Chen, J., Zhang, B. D., Wang, B. X., Zhang, W. L., Wang, J. C., Cui, C. X., & Wang, S. L. Heterogeneous electro-Fenton using three-dimension Fe-Co-Bi/kaolin particle electrodes for degradation of quinoline in wastewater. Environmental Science and Pollution Research, 2023, 30(1), 1399–1412.
6. Chen J., Zhang, B. D., Wang, B. X., Chengxing Cui, Cui, C. X., & Wang, S. L., Enhanced degradation of quinoline in three-dimensional electro-Fenton system through NiCo2S4/g-C3N4 particles. Arabian Journal of Chemistry, 2023, 16(1), 104893.
7. Chen, J., Zhang, B. D., Wang, B. X., Cui, C. X., Wang, S. L., Wang, J. C., & Zhang, W. L. Enhanced degradation of quinoline in three-dimensional electro-Fenton system using catalytic Fe-Co-Ni-P/g-C3N4 particles. International Journal of Electrochemical Science, 2022, 17(12), 221296.
四、获奖
(1) 高效固相(微)萃取与色谱分离新技术的开发与应用,2016年,河南省科技进步奖二等奖,第5名;
(2) 光电功能杂化材料制备关键技术及污染物检测治理应用,2024年,河南省科技进步奖三等奖,第5名
(3) 环境功能杂化碳基材料制备关键技术创新及产业化应用,2024年,河南省科技进步奖三等奖,第3名