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摘要
En 中文
锂金属电池提供高能量密度,但由于活性锂和易燃电解质而易发生热失控。目前的研究报道了一种热响应性电解质,该电解质在接近隔膜熔点时迅速固化,形成保护性骨架,在防止短路的同时允许正常工作。
Keyword:
Lithium-metal batteries
thermal runaway
thermoresponsive electrolyte
solidification
short circuit prevention
期刊
IF:
60.1
论文数:
1.0K
被引数:
5.6W
机构
引用论文
Rapid temperature-responsive thermal regulator for safety management of battery modules用于电池模块安全管理的快速温度响应热调节器
NATURE ENERGY
IF60.1
Thermoresponsive Mono-Solvent Electrolyte Inhibiting Parasitic Reactions for Safe Lithium Metal Batteries热响应性单溶剂电解质抑制安全锂金属电池的寄生反应
Fire-extinguishing, recyclable liquefied gas electrolytes for temperature-resilient lithium-metal batteries用于温度弹性锂金属电池的可灭火,可回收液化气体电解质
NATURE ENERGY
IF60.1
Ultrafast thermo-responsive electrolyte for enhanced safety in lithium metal batteries用于增强锂金属电池安全性的超快热响应电解质
Nature Energy
IF60.1
Thermoresponsive Electrolytes for Safe Lithium-Metal Batteries用于安全锂金属电池的热响应性电解质
ADVANCED MATERIALS
IF26.8
Industry needs for practical lithium-metal battery designs in electric vehicles电动汽车中实用锂金属电池设计的行业需求
NATURE ENERGY
IF60.1
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