Fan Yange, Wang Huifeng, Chen Shipeng, Hou Yimin, Wang Shujiang
Institute of Chemistry Co., Ltd., Henan Academy of Sciences, Zhengzhou 450002, China.
School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China.
Materials (Basel). 2023 Mar 6;16(5):2117. doi: 10.3390/ma16052117.
Herein, we present the synthesis and electrochemical performance of a comb-like polycaprolactone-based gel electrolyte from acrylate terminated polycaprolactone oligomers and liquid electrolyte for high-voltage lithium metal batteries. The ionic conductivity of this gel electrolyte at room temperature was measured to be 8.8 × 10 S cm, which is an exceptionally high value that is more than sufficient for the stable cycling of solid-state lithium metal batteries. The Li transference number was detected to be 0.45, facilitating the prohibition of concentration gradients and polarization, thereby prohibiting lithium dendrite formation. In addition, the gel electrolyte exhibits high oxidation voltage up to 5.0 V vs. Li/Li and perfect compatibility against metallic lithium electrodes. The superior electrochemical properties provide the LiFePO-based solid-state lithium metal batteries with excellent cycling stability, displaying a high initial discharge capacity of 141 mAh g and an extraordinary capacity retention exceeding 74% of its initial specific capacity after being cycled for 280 cycles at 0.5C at room temperature. This paper presents a simple and effective in situ preparation process yielding an excellent gel electrolyte for high-performance lithium metal battery applications.
在此,我们展示了一种由丙烯酸酯封端的聚己内酯低聚物和液体电解质合成的梳状聚己内酯基凝胶电解质及其在高压锂金属电池中的电化学性能。该凝胶电解质在室温下的离子电导率测得为8.8×10 S cm,这是一个极高的值,足以满足固态锂金属电池的稳定循环。检测到锂迁移数为0.45,有助于抑制浓度梯度和极化,从而抑制锂枝晶的形成。此外,该凝胶电解质具有高达5.0 V(相对于Li/Li)的高氧化电压以及与金属锂电极的完美兼容性。优异的电化学性能为基于LiFePO的固态锂金属电池提供了出色的循环稳定性,在室温下以0.5C循环280次后,显示出141 mAh g的高初始放电容量和超过其初始比容量74%的出色容量保持率。本文提出了一种简单有效的原位制备工艺,可制备出用于高性能锂金属电池应用的优异凝胶电解质。