Composite electrolytes and interface designs for progressive solid‐state sodium batteries

Author:

Hou Junyu12,Zhu Tianke12,Wang Gang12,Cheacharoen Rongrong3,Sun Wu12,Lei Xingyu12,Yuan Qunyao12,Sun Dalin1,Zhao Jie12ORCID

Affiliation:

1. Department of Materials Science Fudan University Shanghai China

2. State Key Laboratory of Molecular Engineering of Polymers, Department of Material Science Fudan University Shanghai China

3. Metallurgy and Materials Science Research Institute Chulalongkorn University Bangkok Thailand

Abstract

AbstractSolid‐state sodium batteries (SSSBs) are poised to replace lithium‐ion batteries as viable alternatives for energy storage systems owing to their high safety and reliability, abundance of raw material, and low costs. However, as the core constituent of SSSBs, solid‐state electrolytes (SSEs) with low ionic conductivities at room temperature (RT) and unstable interfaces with electrodes hinder the development of SSSBs. Recently, composite SSEs (CSSEs), which inherit the desirable properties of two phases, high RT ionic conductivity, and high interfacial stability, have emerged as viable alternatives; however, their governing mechanism remains unclear. In this review, we summarize the recent research progress of CSSEs, classified into inorganic–inorganic, polymer–polymer, and inorganic–polymer types, and discuss their structure–property relationship in detail. Moreover, the CSSE–electrode interface issues and effective strategies to promote intimate and stable interfaces are summarized. Finally, the trends in the design of CSSEs and CSSE–electrode interfaces are presented, along with the future development prospects of high‐performance SSSBs.

Funder

China Postdoctoral Science Foundation

Science and Technology Commission of Shanghai Municipality

Publisher

Wiley

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