arrow
Return

Research progress in Li-argyrodite-based solid-state electrolytes

delete2020-01-01
delete85
PRE
AI
X
Xiangtao Bai *
Y
Yi Duan
W
Weidong Zhuang
R
Rong Yang
J
Jiantao Wang
DOI:10.1039/d0ta08472gdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Due to the use of liquid electrolytes containing flammable organic solvents, commercial lithium-ion batteries have potential safety issues. All-solid-state lithium batteries (ASSLBs) that utilize solid-state electrolytes (SSEs) are regarded as a secure, next-generation battery system. Significant efforts have been devoted toward developing ASSLBs, but the application of ASSLBs still needs to resolve some scientific and technical problems, such as SSE with high ionic conductivity and stability, technology to reduce interfacial resistance between the electrolyte and electrode, battery design, and large-scale manufacturing technology. The SSE plays a vital role in resolving the above problems and is one of the solutions to achieve the practical application of ASSLBs. Among the many types of SSEs investigated in the past years, Li argyrodite is considered the most promising because of its high ionic conductivity and mechanical properties, and has been investigated in great detail. This article aims to provide a comprehensive review of the research progress in the modification and synthesis of Li-argyrodite-based SSEs, as well as their effects on improvements in ionic conductivity, stability, and interfacial performance. Potential research directions in the development of Li-argyrodite-based SSEs that are commercially feasible in the future are also suggested.
Keywords:
LITHIUM SECONDARY BATTERIES
CONDUCTOR THIO-LISICON
LIQUID-PHASE TECHNIQUE
IONIC-CONDUCTIVITY
MECHANICAL-PROPERTIES
LI6PS5X X
SULFIDE ELECTROLYTES
ELECTROCHEMICAL PROPERTIES
SUPERIONIC CONDUCTORS
COMPOSITE ELECTRODES
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Journal of Materials Chemistry A cover
Journal of Materials Chemistry A
IF:
9.5
Papers:
3.3W
Citations:
21.7W

Organization

G
General Research Institute for Nonferrous Metals
Scholars:
2.2K
Papers: 1.4K
Citations: 1