返回
摘要
En 中文
Solid-state batteries are regarded as reliable battery systems that overcome some issues in current lithium-ion batteries originated from the organic-solvent electrolytes; however, their power densities have not been high enough to practical use. Intensive studies aiming at the improvement of the rate capability have provided solid electrolytes with high ionic conductivities, in which lithium-ion transport properties are comparable or superior to those in the liquid electrolytes. However, there are further resistances still remaining at interfaces, which are rate-determining; high-power solid-state batteries will not be realized without reducing the interfacial resistances. This paper reviews such highly-resistive interfaces in some solid-state systems and some attempts made to reduce the interfacial resistances.
Keyword:
IONIC-CONDUCTIVITY
INTERFACIAL NANOARCHITECTONICS
LITHIUM
OXIDE
PROGRESS
GLASS
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
机构
引用论文
Interfacial modification for high-power solid-state lithium batteries高功率固态锂电池的界面改性
SOLID STATE IONICS
IF3.3
High lithium ionic conductivity in the garnet-type oxide Li7-X La3(Zr2-X, NbX)O12 (X=0-2)石榴石型氧化物Li7-X La3(Zr2-X,NbX)O12 (X = 0-2) 中的高锂离子电导率
Enhancement of the high-rate capability of solid-state lithium batteries by nanoscale interfacial modification通过纳米级界面修饰增强固态锂电池的高倍率性能
ADVANCED MATERIALS
IF26.8
Sexual and aggressive interactions in a visible burrow system with provisioned burrows具有配置洞穴的可见洞穴系统中的性和攻击性互动
Synthetic design of crystalline inorganic chalcogenides exhibiting fast-ion conductivity具有快速离子电导率的结晶无机硫属化物的合成设计
NATURE
IF48.5

