材料科学
石墨烯
离域电子
化学工程
离子
储能
动力学
复合数
双金属片
扩散
硫化物
纳米技术
复合材料
热力学
化学
功率(物理)
量子力学
工程类
有机化学
冶金
物理
金属
作者
Zhiqin Sun,Kunjie Zhu,Pei Liu,Yuchang Si,Haixia Li,Lifang Jiao
标识
DOI:10.1016/j.ensm.2021.05.041
摘要
Bimetallic sulfides display good electroconductibility and more redox active sites for sodium ion storage, which are expected to realize fast charging/discharging of sodium ion hybrid capacitors (SIHCs) integration. Herein, Sb was introduced into SnS2 on graphene (ATS/GNS) to enhance the kinetics of Na+ storage. The introduction of Sb at Sn site in SnS2 leads to a residual delocalized s electron and forms a half-filled and delocalized intermediate band, which can effectively improve electroconductivity. ATS possesses a high adsorption energy (-3.13 eV) and low diffusion energy barrier (0.26 eV) of Na+ by density functional theory calculations. ATS/GNS with remarkable stability possesses a reversible capacity of 507 mAh g−1 at 1 A g−1 after 3000 cycles. The ATS/GNS//N, S doped porous carbon SIHC delivers high energy/power densities (115 Wh kg−1/351 W kg−1 and 41 Wh kg−1/18750 W kg−1), and an excellent capacity retention of 70% after 10000 cycles at 5 A g−1. This work may present a feasible approach to design high-rate and long-term stability of sodium-based devices.
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