电子邮箱:skl2020@xtu.edu.cn
地址:湘潭大学工程训练中心4栋203
教育背景及工作经历
2019.07-至今湘潭大学,湖南先进传感与信息技术创新研究院,副教授
2016.09-2019.06 华南理工大学,应用化学,博士
2013.09-2016.06湘潭大学,物理化学,硕士
2009.09-2013.06河北师范大学,化学,学士
研究方向与成果
碳基传感器及传感器用微纳储能系统的开发,已发表SCI论文10余篇,已授权国家发明专利3项。
代表性论文
[1]In-situ grown vanadium nitride coated with thin layer of nitrogen-doped carbon as a highly durable binder-free cathode for Li–O2batteries[J].Journal of Power Sources, 2020, 460: 228109.
[2]Biomass-derived 3D hierarchical N-doped porous carbon anchoring cobalt-iron phosphide nanodots as bifunctional electrocatalysts for Li-O2batteries[J].Journal of Power Sources, 2019, 412: 433-441.
[3] Oxygen-containing hierarchically porous carbon materials derived from wild jujube pit for high-performance supercapacitor[J].Electrochimica Acta, 2017, 231: 417-428.
[4] Hybrid LiV3O8/carbon encapsulated Li1.2Mn0.54Co0.13Ni0.13O2with improved electrochemical properties for lithium ion batteries[J].RSC Advances, 2016, 6(34): 28729-28736.
[5] Carbon-Based Cathode Materials for Non-Aqueous Lithium-Air Batteries[J].Progress in Chemistry, 2019, 31(10): 1406.
[6] Rationally Designed Three-Dimensional N-Doped Graphene Architecture Mounted with Ru Nanoclusters as a High-Performance Air Cathode for Lithium–Oxygen Batteries[J].ACS Sustainable Chemistry & Engineering, 2020, 8(15): 6109-6117.
[7] Yucca-like CoO–CoN Nanoarray with Abundant Oxygen Vacancies as a High-Performance Cathode for Lithium–Oxygen Batteries[J].ACS Applied Energy Materials, 2020, 3(12): 12000-12008.
[8] Highly effective and stable doped carbon catalyst with three-dimensional porous structure and well-covered Fe3C nanoparticles prepared with C3N4 and tannic acid as template/precursors[J].Journal of Power Sources, 2019, 417: 117-124.
[9] Well-defined ZIF-derived Fe–N codoped carbon nanoframes as efficient oxygen reduction catalysts[J].ACS Applied Materials & Interfaces, 2017, 9(11): 9699-9709.
[10] MOF-derived carbon materials mounted with highly dispersed Ru and MoO3 for rechargeable Li–O2cathode yield enhanced cyclability[J].ACS Sustainable Chemistry & Engineering, 2018, 7(2): 2296-2303.