电解质
阳极
材料科学
准固态
锂(药物)
离子
共晶体系
电池(电)
锂离子电池
化学工程
堆栈(抽象数据类型)
复合材料
化学
电极
计算机科学
合金
功率(物理)
物理
热力学
物理化学
医学
有机化学
内分泌学
工程类
色素敏化染料
程序设计语言
作者
Hui Pan,Lei Wang,Yu Shi,Chuanchao Sheng,Sixie Yang,Ping He,Haoshen Zhou
标识
DOI:10.1038/s41467-024-46472-9
摘要
Applying high stack pressure (often up to tens of megapascals) to solid-state Li-ion batteries is primarily done to address the issues of internal voids formation and subsequent Li-ion transport blockage within the solid electrode due to volume changes. Whereas, redundant pressurizing devices lower the energy density of batteries and raise the cost. Herein, a mechanical optimization strategy involving elastic electrolyte is proposed for SSBs operating without external pressurizing, but relying solely on the built-in pressure of cells. We combine soft-rigid dual monomer copolymer with deep eutectic mixture to design an elastic solid electrolyte, which exhibits not only high stretchability and deformation recovery capability but also high room-temperature Li-ion conductivity of 2×10
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