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[11]郭玮佳,耿超,孙宗富,jiangjiangmin,Zhicheng Ju.Microstructure-controlled amorphous carbon anode via pre-oxidation engineering for superior potassium-ion storage,2022
[12]刘家岑,林业超,郭楠楠,耿超,jiangjiangmin,zhuang quanchao,Zhicheng Ju,chenyaxin.Synergistic Regulation of Low-defects Manganese Hexacyanoferrates with Stable Electrode/Electrolyte Interface for Enhancing Electrochemical Potassium Storage Performance,2022
[13]Lithiophilic Polymer Interphase Anchored on Laser-punched 3D Holey Cu Matrix Enables Uniform Lithium Nucleation Leading to Super-stable Lithium Metal Anodes.Energy Storage Materials,2020,29:84-91
[14]Nanohollow Carbon for Rechargeable Batteries: On-going Progresses and Challenges.Nano-Micro Letters,2020,12(1):1-30
[15]Hierarchical N-doped hollow carbon microspheres as advanced materials for high-performance lithium-ion capacitors.Journal of Materials Chemistry A,2020,8(7):3956-3966
[16]Defect-rich and N-doped hard carbon as a sustainable anode for high-energy lithium-ion capacitors.Journal of Colloid and Interface Science,2020,567:75-83.
[17]Sodium ion capacitors: materials, mechanism and challenges..ChemSusChem,2020,13:2522-2539
[18]Engineering Ultrathin MoS2 Nanosheets Anchored on N-Doped Carbon Microspheres with Pseudocapacitive Properties for High-Performance Lithium-Ion Capacitors.Small Methods,2019,3(7):1900081.
[19]Highly stable lithium ion capacitor enabled by hierarchical polyimide derived carbon microspheres combined with 3D current collectors.Journal of Materials Chemistry A,2017,5(44):23283-23291.
[20]Effect of Graphene Modified Cu Current Collector on the Performance of Li4Ti5O12 Anode for Lithium-Ion Batteries.ACS Applied Materials & Interfaces,2016,8(45):30926-30932.
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