Chemical Bond Covalency in Superionic Halide Solid‐State Electrolytes

J Jiamin Fu H Han Su J Jing Luo X Xiaona Li (Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery) J Jianwen Liang C Changhong Wang J Jung Tae Kim Y Yang Hu F Feipeng Zhao S Shumin Zhang H Hui Duan X Xiaoge Hao W Weihan Li J Jian Peng J Jue Liu S Shuo Wang T Tsun‐Kong Sham (Department of Chemistry University of Western Ontario London Ontario N6A 5B7 Canada) X Xueliang Sun

Abstract

Abstract Halide solid‐state electrolytes (SSEs) are promising superionic conductors with high oxidative stability and ionic conductivity, making them attractive for all‐solid‐state lithium‐ion batteries. However, most studies have focused on ion‐stacking structures, overlooking the role of bond characteristics in ionic transport. Here, we investigate bond dynamics and the superionic transition (SIT) in bromide electrolyte, Li 3 InBr 6 , using synchrotron X‐ray techniques and ab initio molecular dynamics (AIMD) simulations. We demonstrate that the SIT in halide SSEs is driven by a thermally induced transition in bonding character (ionic to covalent) rather than a change in crystal phase. AIMD simulations further reveal enhanced Li⁺ diffusion and collective anion motion at elevated temperatures. Expanding our study to Li 3 LnBr 6 (Ln = Gd, Tb, Ho, Tm, and Lu), we confirm the widespread occurrence of SIT in this material class, with Li 3 GdBr 6 exhibiting the highest ionic conductivity (5.2 mS cm −1 at 298 K). More importantly, the ionic‐covalent transition is highly tunable through electrolyte modifications, such as cation/anion substitution and synthesis methods. Our findings provide a new perspective on ionic transport, highlighting the critical role of chemical bond characteristics in halide SSEs.

Article Details

Volume / Issue Vol. 64, Issue 32
Published August 04, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (18)

J

Jiamin Fu

H

Han Su

J

Jing Luo

X

Xiaona Li

Eastern Institute for Advanced Study, Ningbo Key Laboratory of All-Solid-State Battery, Zhejiang Key Laboratory of All-Solid-State Battery

J

Jianwen Liang

C

Changhong Wang

J

Jung Tae Kim

Y

Yang Hu

F

Feipeng Zhao

S

Shumin Zhang

H

Hui Duan

X

Xiaoge Hao

W

Weihan Li

J

Jian Peng

J

Jue Liu

S

Shuo Wang

T

Tsun‐Kong Sham

Department of Chemistry University of Western Ontario London Ontario N6A 5B7 Canada

X

Xueliang Sun