[1] Wang Yuan; Huang   Hong; Fang Yingsen; Pan Hu; Shen Zhangfeng; Wang Yangang;* Li Xi;*   Enhancement of Zn-ion hybrid supercapacitors by using dual redox-active ions   electrolytes. Chemical Engineering Journal, 2022, 445, 136796.  [2] Luo Xiaodong; Wang Yuan*;   Shen Zhangfeng; Cui Lifen; Wang Yangang;* Li Xi;*   Construction of hierarchically porous biomass carbon using iodine as   pore-making agent for energy storage. Journal of colloid and interface science,   2021, 599, 351-359. [3] Liu Yangxiao; Dai, Jiaxin;   Xiao, Yongchen; Wang Yuan*; Wang, Baofeng*; Huang, Fuqiang*, Novel   zinc-ion hybrid supercapacitors with enhanced specific capacity by   redox-active ions. Journal of Energy   Storage 2024, 77, 109834. [4] Wang Yuan; Chang   Zheng*; Qian Meng; Zhang Zhichao; Lin Jie; Huang Fuqiang;*   Enhanced specific capacitance by a new dual redox-active electrolyte in   activated carbon-based supercapacitors. Carbon, 2019, 143, 300-308.  [5] Wang Yuan; Chang   Zheng; Qian Meng; Lin Tianquan; Huang Fuqiang;* A bridge between   battery and supercapacitor for power/energy gap by dual redox-active ions   electrolyte. Chemical Engineering Journal, 2019, 375.  [6] Wang Yuan; Chang   Zheng; Zhang Zhichao; Lin Jie; Qian Meng; Wang Peng; Lin Tianquan;*   Fuqiang Huang;* A facile approach to improve electrochemical   capacitance of carbons by in situ electrochemical oxidation. ACS applied   materials & interfaces, 2019, 11 (6), 5999-6008. [7] Wang Yuan;#   Chang Zheng;#* Li Junqiang; Li Ruizhe; Huang Fuqiang;*   Zinc ferrum energy storage chemistries with high efficiency and long cycling   life. Journal of Materials Chemistry A, 2018, 6 (32), 15821-15827.     |