电解质
阴极
材料科学
化学工程
聚合物
高压
吸附
离子
电压
复合材料
电极
化学
有机化学
电气工程
工程类
物理化学
作者
Jialin Lin,Honghui Peng,Pei Huang,Tuoya Naren,Chaoping Liang,Gui‐Chao Kuang,Libao Chen,Chunxiao Zhang,Weifeng Wei
标识
DOI:10.1002/adfm.202307061
摘要
Abstract Sodium‐ion batteries (SIBs) suffer from severe capacity decay as the harmful substances caused by the violent decomposition of electrolyte under high voltages continue to erode the cathodes. Therefore, the design of high‐voltage electrolyte and construction of robust cathode–electrolyte interface (CEI) are critical for long‐life SIBs. Herein, an electrically coupled composite electrolyte that takes the merits of cross‐linked gel polymers and s well‐tuned antioxidant additive (4‐trifluoromethylphenylboronic acid, TFPBA) is proposed. Through an electrical coupling effect, TFPBA can be anchored by the cross‐linked polymer framework to immobilize the PF 6 − anion and adsorb onto cathode surface spontaneously, both of which promote the formation of a robust CEI layer to facilitate Na + transportation and suppress subsequent side reactions and corrosive cracking. As a result, the cells integrating high‐voltage P2/O3 cathode and well‐tailored gel polymer electrolyte achieve stable cycling over 550 cycles within 1.8–4.2 V with a capacity retention of 71.0% and a high‐rate discharge capacity of 77.4 mAh g −1 at 5 C. The work paves the way for the development of functionalized quasi‐solid electrolyte for practical next generation high‐voltage SIBs.
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