Reactive Magnesium Nitride Additive: A Drop‐in Solution for Lithium/Garnet Wetting in All‐Solid‐State Batteries

Author:

Chen Linhui1,Tong Rong‐Ao1,Zhang Jingxi1,Wang Hailong2,Shao Gang2,Dong Yanhao1ORCID,Wang Chang‐An1ORCID

Affiliation:

1. State Key Laboratory of New Ceramics and Fine Processing School of Materials Science and Engineering Tsinghua University Beijing 100084 China

2. School of Materials Science and Engineering Zhengzhou University Zhengzhou 450001 Henan China

Abstract

AbstractGarnet oxides such as Li6.4La3Zr1.4Ta0.6O12 (LLZTO) are promising solid electrolyte materials for all‐solid‐state lithium‐metal batteries because of high ionic conductivity, low electronic leakage, and wide electrochemical stability window. While LLZTO has been frequently discussed to be stable against lithium metal anode, it is challenging to achieve and maintain good solid‐on‐solid wetting at the metal/ceramic interface in both processing and extended electrochemical cycling. Here we address the challenge by a powder‐form magnesium nitride additive, which reacts with the lithium metal anode to produce well‐dispersed lithium nitride. The in situ formed lithium nitride promotes reactive wetting at the Li/LLZTO interface, which lowers interfacial resistance, increases critical current density (CCD), and improves cycling stability of the electrochemical cells. The additive recipe has been diversified to titanium nitride, zirconium nitride, tantalum nitride, and niobium nitride, thus supporting the general concept of reactive dispersion‐plus‐wetting. Such a design can be extended to other solid‐state devices for better functioning and extended cycle life.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Medicine

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