研究方向:
碳材料在电化学储能(钠离子电池、锂离子电池、超级电容器)、环境电分析及工业电解领域中的应用基础研究
英文标签:
Supercapacitors;Supercapacitor;Oxygen Evolution Reaction;Water Splitting;Mechanical Properties;Heteroatom Doping;Nanocomposites;Superionic State;Porous Graphdiynes;Porous 2d Materials
论文著作:
1. Role of Nitrogen-doping in porous carbon for enlarging working voltage window of aqueous supercapacitors in neutral electrolyte. Chemical Engineering Journal, 2024, 499: 155880.
2. Potential of zero charge regulating highly selective removal of nitrate anions through capacitive deionization, Chemical Engineering Journal, 2022, 442, 136287.
3. Temperature-dependent performance of carbon-based supercapacitors with water-in-salt electrolyte. Journal of Power Sources, 2019, 441: 227220.
4. Heteroatom doped porous carbon sheets derived from protein-rich wheat gluten for supercapacitors: The synergistic effect of pore properties and heteroatom on the electrochemical performance in different electrolytes. Journal of Power Sources, 2018, 401: 375-385.
5. Hierarchically porous and heteroatom doped carbon derived from tobacco rods for supercapacitors. Journal of Power Sources, 2016, 307: 391-400. (ESI highly cited)
发明专利:
(1)一种正极及其在超级电容器中的应用, ZL201410216992.1
(2)一种超级电容器用复合电极及其制备方法 , ZL201210198641.3(已转化)
(3)一种石墨炔的合成方法,ZL202110937445.2(已转化)
(4)石墨炔/铋纳米点复合电极及用其电化学检测铅离子方法,ZL202210944489.2
(5)纳米氧化铋嵌入氮掺杂碳纳米片复合材料及用其检测重金属的电化学方法,ZL202310210574.0
科研项目:
(1)新型敏感材料精准合成及其检测技术方法研究,2020YFC1807302,国家重点研发计划项目子课题,2020.10-2024.11,50万元
(2)超级电容器电极材料结构与性能关系研究—以结构可调控的石墨烯/二氧化锰杂化空心微球为研究对象,21503102,国家自然科学基金青年基金,2016.01-2018.12,24.4万元
(3)超低温环境用镍氢电池的应用研究,(24)0072,企业委托项目,2023.11-2025.10,180万元
(4)铜箔无铬钝化工艺研究,(22)0396,企业委托项目,2022.07-2023-07,120万元
(5)国六柴油车稀土SCR催化剂反应机理、合成方法及相关工艺研究,(23)0191,企业委托项目,2023.03-2025-09,60万元
(6)面向深空探测用石墨双炔气体传感器技术研究,(23)0209,企业委托项目,2022.09-2024.08,40万元
(7)新型分布式储能碳材料的应用,(20)0434,企业委托项目,2020.07-2023.07,10万元
(8)水系二氧化锰超级电容器,(12)0545 (14)0130,企业委托项目,2012.11-2015.08,60万元