电解质
碳酸乙烯酯
溶剂化
电池(电)
化学
碳酸二甲酯
无机化学
化学工程
分解
相间
钠
盐(化学)
金属
材料科学
离子
甲醇
物理化学
有机化学
电极
热力学
功率(物理)
物理
工程类
遗传学
生物
作者
Shien Zhong,Yongshi Yu,Yi Yang,Yu Yao,Lifeng Wang,Shengnan He,Yaxiong Yang,Lin Liu,Wenping Sun,Yuezhan Feng,Hongge Pan,Xianhong Rui,Yan Yu
标识
DOI:10.1002/anie.202301169
摘要
Carbonate electrolytes have excellent chemical stability and high salt solubility, which are ideally practical choice for achieving high-energy-density sodium (Na) metal battery at room temperature. However, their application at ultra-low temperature (-40 °C) is adversely affected by the instability of solid electrolyte interphase (SEI) formed by electrolyte decomposition and the difficulty of desolvation. Here, we designed a novel low-temperature carbonate electrolyte by molecular engineering on solvation structure. The calculations and experimental results demonstrate that ethylene sulfate (ES) reduces the sodium ion desolvation energy and promotes the forming of more inorganic substances on the Na surface, which promote ion migration and inhibit dendrite growth. At -40 °C, the Na||Na symmetric battery exhibits a stable cycle of 1500 hours, and the Na||Na3 V2 (PO4 )3 (NVP) battery achieves 88.2 % capacity retention after 200 cycles.
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