陈荣生课题组

发布时间:2024-04-01 发布者: 浏览次数:


陈荣生 教授 (团队负责人)

理学学士/硕士 工学博士 化学 教授

 

教育与工作经历 

2007.6至今,武汉科技大学化学与化工学院,教师

2013.112014.11,哥伦比亚大学化学系,访问学者

2006.52007.2,香港城市大学生物与化学系,研究助理

2000.92005.12,武汉大学化学与分子科学学院,理学博士

1994.91998.6,武汉大学化学与分子科学学院,理学学


联系方式

邮箱: chenrs@wust.edu.cn

地址: 武汉市青山区和平大道947号 武汉科技大学 钢铁楼 910室,邮编:430081

 

undefined


马峰 老师(团队成员)

undefined

博士 讲师

 

教育与工作经历

2020.09-至今武汉科技大学化学与化工学院讲师

2016.09-2020.06 华中科技大学材料科学与工程学院获得工学博士学位

2015.09-2016.08 南京大学现代工程与应用科学学院研究助理

2012.09-2015.06 上海大学理学院获得理学硕士学位

2007.09-2011.06 中国地质大学(武汉)获得工学学士学位


 

联系方式

 

邮箱:fengma88@wust.edu.cn

地址:武汉市青山区和平大道947武汉科技大学;邮编:430081


 

实验室一览



undefined


undefined


undefined

测试实验室(材料制备,光催化反应,氢气产率测定,二氧化碳、甲醇测定)


础电化学测试(材料制备,电解水实验,综合电化学分析,信号干扰屏蔽箱)


测试实验室(综合电化学分析,材料制备和性能测试)


分研究成果

 

  1. Xu, QZ; Zhang, BY; Zeng, YH; Zangiabadi, A; Ni, HW; Chen, RS*; Ng, F; Steigerwald, ML; Nuckolls, C*. Electrical conductivity in a non-covalent two-dimensional porous organic material with high crystallinity, Chemical Science 2021, 12, 2955-2959.

  2. Zhao, JY; Zeng, Y; Wang, J; Xu, QZ; Chen, RS*; Ni, HW; Cheng, GJ*. Ultrahigh electrocatalytic activity with trace amounts of platinum loadings on free-standing mesoporous titanium nitride nanotube arrays for hydrogen evolution reactions, Nanoscale 2020, 12, 15393-15401.

  3. Wang, J; Liu, YL; Cheng, L; Chen, RS*; Ni, HW. Quasi-aligned nanorod arrays composed of Nickel-Cobalt nanoparticles anchored on TiO2/C nanofiber arrays as free standing electrode for enzymeless glucose sensors, Journal of Alloys and Compounds 2020, 821, 153510.

  4. Wang, J; Zeng, Yan; Wang, LL; Zhao, JY; Yang, J; Hu, J; Miao, FF; Zhan, WW; Chen, RS*; Liang F*. Catalyst-free fabrication of one-dimensional N-doped carbon coated TiO2 nanotube arrays by template carbonization of polydopamine for high performance electrochemical sensors, Applied Surface Science 2020, 509, 145301.

  5. Liu, YL; Wan, LL; Wang, J; Cheng, L; Chen, RS*; Ni, HW. Binary electrocatalyst composed of Mo2C nanocrystals with ultra-low Pt loadings anchored in TiO2 nanotube arrays for hydrogen evolution reaction, Applied Surface Science 2020, 509, 144679.

  6. Peurifoy, SR; Sisto, TJ; Ng, F; Steigerwald, ML; Chen, RS*; Nuckolls, C*. Dimensional control in contorted aromatic materials, Chemical Record 2019, 19, 1050-1061.

  7. Zhao, JY; Cheng, L; Wang, J; Liu, YL; Yang, J; Xu, QZ*; Chen, RS*; Ni, HW. Heteroatom-doped carbon nanofilm embedded in highly ordered TiO2 nanotube arrays by thermal nitriding with enhanced electrochemical activity, Journal of Electroanalytical Chemistry 2019, 852, 113513.

  8. Yang, J; Cheng, L; Wan, LL; Yan, JB; Chen, RS*; Ni, HW. Fabrication of sandwich structured C/NiO/TiO2 nanotube arrays for enhanced electrocatalytic activity towards hydrogen evolution, Electrochemistry Communications 2018, 97, 68-72.

  9. Yang, J; Chen, ZL; Wang, H; Liang, F; Chen, RS*; Wu, RB*. Highly ordered three-dimensional TiO2@C nanotube arrays as freestanding electrode for sodium-ion battery, Materials Letters 2017, 207, 149-152.

  10. Li Y, Fu JJ, Chen RS*, Huang M, Gao B, Huo KF, Wang L, Chu PK*. Core-Shell VACNF nanofiber arrays decorated with copper nanoparticles for high performance non-enzymatic glucose sensing, Sensors & Actuators: B. Chemical 2014, 192, 474-479.

 

关闭