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[1]Xu-Geng Deng, Le-Qing Fan*, Xiao-Yun Fu, Tao Tang, Shi-Hua Lin, Long Chen, Fu-Da Yu, Yun-Fang Huang, Miao-Liang Huang*, Ji-Huai Wu, Carbon-reinforced Ni3S2/Ti3C2Tx MXene composite as an anode for superior-performance lithium-ion capacitors, J. Colloid Interface Sci., 2024, 661, 237-248..
[2]Zheng-Xue Wu, Le-Qing Fan*, Jiao-Juan Chen, Xu-Geng Deng, Tao Tang, Yun-Fang Huang, Ji-Huai Wu*, Amorphous Co-Mo-S nanospheres fabricated via room-temperature vulcanization for asymmetric supercapacitors, J. Colloid Interface Sci., 2023, 649, 880-889..
[3]Jiao-Juan Chen, Le-Qing Fan*, Zheng-Xue Wu, Xu-Geng Deng, Tao Tang, Fu-Da Yu, Yun-Fang Huang, Ji-Huai Wu*, Design of a pseudocapacitive cathode based on polypyrrole-derived carbon tube supported anthraquinone for lithium-ion hybrid capacitors, Electrochim. Acta, 2023, 462, 142735..
[4]Yong-Lan Wang, Le-Qing Fan*, Si-Jia Sun, Jiao-Juan Chen, Zheng-Xue Wu, Ting-Ting Zhu, Yun-Fang Huang, Ji-Huai Wu*, Ti3C2Tx MXene supported SnO2 quantum dots with oxygen vacancies as anode for Li-ion capacitors, Chem. Eng. J., 2022, 428, 131993..
[5]Zheng-Xue Wu, Le-Qing Fan*, Jiao-Juan Chen, Xu-Geng Deng, Tao Tang, Yun-Fang Huang, Ji-Huai Wu*, Two-step hydrothermal synthesis of a fireworks-like amorphous Co3S4 for asymmetric supercapacitors with superior cycling stability, Electrochim. Acta, 2022, 426, 140777..
[6]Jiao-Juan Chen, Le-Qing Fan*, Zheng-Xue Wu, Xu-Geng Deng, Tao Tang, Yun-Fang Huang, Ji-Huai Wu*, Phenothiazine/reduced graphene oxide composite as a pseudocapacitive cathode for lithium ion capacitors, Electrochim. Acta, 2022, 434, 141340..
[7]Le-Qing Fan*, Jian-Ling Huang, Yong-Lan Wang, Cheng-Long Geng, Si-Jia Sun, Yun-Fang Huang, Jian-Ming Lin, Ji-Huai Wu*, TiO2 nanotubes supported ultrafine MnCo2O4 nanoparticles as a superior-performance anode for lithium-ion capacitors, Int. J. Hydrogen Energy, 2021, 46, 35330-35341..
[8]Le-Qing Fan*, Qiu-Mei Tu, Cheng-Long Geng, Jian-Ling Huang, Yun Gu, Jian-Ming Lin, Yun-Fang Huang, Ji-Huai Wu*, High energy density and low self-discharge of a quasi-solid-state supercapacitor with carbon nanotubes incorporated redox-active ionic liquid-based gel polymer electrolyte, Electrochim. Acta, 2020, 331, 135425..
[9]Le-Qing Fan*, Qiu-Mei Tu, Cheng-Long Geng, Yong-Lan Wang, Si-Jia Sun, Yun-Fang Huang, Ji-Huai Wu*, Improved redox-active ionic liquid-based ionogel electrolyte by introducing carbon nanotubes for application in all-solid-state supercapacitors, Int. J. Hydrogen Energy, 2020, 45, 17131–17139..
[10]Le-Qing Fan*, Jian-Ling Huang, Yong-Lan Wang, Cheng-Long Geng, Si-Jia Sun, Yun-Fang Huang, Ji-Huai Wu*, High-capacity MnCo2O4 supported by reduced graphene oxide as an anode for lithium-ion capacitors, J. Energy Storage, 2020, 30, 101427..
[11]Gui-Jing Liu*, Yan-Ying Shi, Lei Wang, Ya-Dong Song, Shan-Min Gao, Dong Liu, Le-Qing Fan*, Reduced graphene oxide/polypyrrole composite: an advanced electrode for high‑performance symmetric/asymmetric supercapacitor, Carbon Letters, 2020, 30, 389-397..
[12]Yun Gu, Le-Qing Fan*, Jian-Ling Huang, Cheng-Long Geng, Jian-Ming Lin, Miao-Liang Huang, Yun-Fang Huang, Ji-Huai Wu*, N-doped reduced graphene oxide decorated NiSe2 nanoparticles for high-performance asymmetric supercapacitors, J. Power Sources, 2019, 425, 60–68..
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