Coupling of bowl-like VS2 nanosheet arrays and carbon nanofiber enables ultrafast Na+-Storage and robust flexibility for sodium-ion hybrid capacitors

被引:86
作者
Xu, Dongming [1 ]
Wang, Huanwen [1 ]
Qiu, Ruyun [1 ]
Wang, Qiang [2 ]
Mao, Zhifei [1 ]
Jiang, Yingjun [3 ]
Wang, Rui [1 ]
He, Beibei [1 ]
Gong, Yansheng [1 ]
Li, Debao [2 ]
Hu, Xianluo [3 ]
机构
[1] China Univ Geosci, Fac Mat Sci & Chem, Wuhan 430074, Peoples R China
[2] Chinese Acad Sci, Inst Coal Chem, State Key Lab Coal Convers, Taiyuan 030001, Peoples R China
[3] Huazhong Univ Sci & Technol, State Key Lab Mat Proc & Die & Mould Technol, Sch Mat Sci & Engn, Wuhan 430074, Peoples R China
关键词
Bowl-like VS2; Array; Nanosheet; Anode; Flexible sodium-ion capacitor; ANODE MATERIAL; HARD CARBON; DENSITY; ELECTRODE; POINTS; DESIGN;
D O I
10.1016/j.ensm.2020.03.002
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Sodium-ion hybrid capacitors (SIHCs) show great promise due to their combination of high energy-storage properties and low cost of Na resources. Yet most anodes in SIHCs suffer from sluggish Na+-diffusion kinetics and relatively low specific capacity, which restrict their widespread development. Herein, bowl-like VS2 nanosheet arrays are uniformly and robustly anchored on a carbon nanofiber (CNF) substrate through a one-step solvothermal method. The bowl-like VS2 is featured with an ultrathin thickness (several atomic layers), intrinsically metallic conductivity and an interconnected array architecture. This unique structural design can not only facilitate ultrafast Na+ ion-diffusion, but also suppress capacity decay of VS2 that is caused by the conversion process below 0.3 V. DFT calculations demonstrate a faster Na+ transport rate and a lower diffusion energy barrier for the VS2/C interface than for the VS2/VS2 bilayer. The quasi-solid-state SIHC full cell that integrates the CNF@VS2 anode and the graphene sheets-wrapped carbon nanofiber (CNF@GS) cathode, displays prominent energy//power densities in the voltage range of 0.0-4.0 V (116 Wh kg(-1) at 0.4 kW kg(-1); 66 Wh kg(-1) at 40 kW kg(-1) based on the total mass of both electrodes), outperforming recent SIHCs.
引用
收藏
页码:91 / 100
页数:10
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