Self‐Supporting Solid Electrolyte Based on Supramolecular Interaction for Stable Li Metal Batteries

Author:

Guan Lixiang12,Xiao Shijun1,Bai Xiang2,Zhang Jiahui2,Su Jia2,Lu Tiantian12,Hou Lifeng12,Du Huayun12,Wei Huan2,Liu Xiaoda2,Yang Chengkai3ORCID,Wie Yinghui12,Wang Qian12

Affiliation:

1. College of Materials Science and Engineering Taiyuan University of Technology, Taiyuan 030024 Shanxi China

2. Shanxi Energy Internet Research Institute, Taiyuan 030024 Shanxi China

3. Key Laboratory of Advanced Materials Technology College of Materials Science and Engineering Fuzhou University 350108 Fuzhou China

Abstract

AbstractLi metal batteries based on solid polymer electrolytes offer the benefits of high energy density and safety, as well as extended cycling life, making them an excellent candidate for the next‐generation battery system. However, current solid polymer electrolytes still suffer from low ion conductivity and Li+ transfer number, which seriously restricts its practical application. Herein, a self‐supporting composite solid polymer electrolyte was prepared, where phenolic resin rich in hydroxyl groups (BR) and polyethylene oxide (PEO) are mixed evenly and poured onto a cellulose membrane in one step. In such an electrolyte, PEO and BR combine to form intermolecular hydrogen bonds, lowering the crystallinity of PEO and increasing the Li+ transfer number. Lastly, the obtained solid electrolytes exhibited a high ion conductivity (1.1×10−4 S cm−1) and Li+ transfer number (0.53), as well as improved electrochemical window. Consequently, Li || Li symmetrical cells can run stably for more than 700 h at 0.1 mA cm−2/0.25 mAh cm−2. And full cells with LiFePO4 cathode can also demonstrate high discharge capacity of 152.12 mAh g−1 and rate performance. We believe that such a design based on supramolecular interaction offer a new avenue to advanced solid polymer electrolytes.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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