电解质
阳极
电化学
材料科学
电极
化学工程
无机化学
化学
物理化学
工程类
作者
Shanshan Fan,Haiping Liu,Ying Xie,Sifu Bi,Xiaohuan Meng,Kaiqi Zhang,Liang Sun,Shilin Zhang,Zhanhu Guo
出处
期刊:Small
[Wiley]
日期:2023-03-20
卷期号:19 (26): e2300188-e2300188
被引量:21
标识
DOI:10.1002/smll.202300188
摘要
Abstract NiCo 2 S 4 is an attractive anode for sodium‐ion batteries (SIBs) due to its high capacity and excellent redox reversibility. Practical deployment of NiCo 2 S 4 electrode in SIBs, however, is still hindered by the inferior capacity and unsatisfactory cycling performance, which result from the mismatch between the electrolyte chemistry and electrode. Herein, a functional electrolyte containing 1.0 m NaCF 3 SO 3 in diethylene glycol dimethyl ether (DEGDME) (1.0 m NaCF 3 SO 3 ‐DEGDME) is developed, which can be readily used for NiCo 2 S 4 anode with high initial coulomb efficiency (96.2%), enhanced cycling performance, and boosted capacities (341.7 mA h g −1 after 250 continuous cycles at the current density of 200 mA g −1 ). The electrochemical tests and related phase characterization combined with density functional theory (DFT) calculation indicate the ether‐based electrolyte is more suitable for the NiCo 2 S 4 anode in SIBs due to the formation of a stable electrode–electrolyte interface. Additionally, the importance of the voltage window is also demonstrated to further optimize the electrochemical performance of the NiCo 2 S 4 electrode. The formation of sulfide intermediates during charging and discharging is predicted by combining DFT and verified by in situ XRD and HRTEM. The findings indicate that electrolyte engineering would be an effective way of performance enhancement for sulfides in practical SIBs.
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