电解质
锂(药物)
化学工程
二甲氧基乙烷
化学
电化学
相间
材料科学
无机化学
电极
遗传学
医学
生物
工程类
内分泌学
物理化学
作者
Li‐Peng Hou,Yuan Li,Zheng Li,Qiankui Zhang,Bo‐Quan Li,Chen‐Xi Bi,Zi‐Xian Chen,Li‐Ling Su,Jia‐Qi Huang,Rui Wen,Xue‐Qiang Zhang,Qiang Zhang
标识
DOI:10.1002/anie.202305466
摘要
Abstract Practical lithium–sulfur (Li−S) batteries are severely plagued by the instability of solid electrolyte interphase (SEI) formed in routine ether electrolytes. Herein, an electrolyte with 1,3,5‐trioxane (TO) and 1,2‐dimethoxyethane (DME) as co‐solvents is proposed to construct a high‐mechanical‐stability SEI by enriching organic components in Li−S batteries. The high‐mechanical‐stability SEI works compatibly in Li−S batteries. TO with high polymerization capability can preferentially decompose and form organic‐rich SEI, strengthening mechanical stability of SEI, which mitigates crack and regeneration of SEI and reduces the consumption rate of active Li, Li polysulfides, and electrolytes. Meanwhile, DME ensures high specific capacity of S cathodes. Accordingly, the lifespan of Li−S batteries increases from 75 cycles in routine ether electrolyte to 216 cycles in TO‐based electrolyte. Furthermore, a 417 Wh kg −1 Li−S pouch cell undergoes 20 cycles. This work provides an emerging electrolyte design for practical Li−S batteries.
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