Zhu Qiancheng, Ma Jie, Li Shujian, Mao Deyu
School of Mechanical and Automotive Engineering, Guangxi University of Science and Technology, Liuzhou 545006, China.
Polymers (Basel). 2023 May 26;15(11):2469. doi: 10.3390/polym15112469.
Traditional lithium-air batteries (LABs) have been seriously affected by cycle performance and safety issues due to many problems such as the volatility and leakage of liquid organic electrolyte, the generation of interface byproducts, and short circuits caused by the penetration of anode lithium dendrite, which has hindered its commercial application and development. In recent years, the emergence of solid-state electrolytes (SSEs) for LABs well alleviated the above problems. SSEs can prevent moisture, oxygen, and other contaminants from reaching the lithium metal anode, and their inherent performance can solve the generation of lithium dendrites, making them potential candidates for the development of high energy density and safety LABs. This paper mainly reviews the research progress of SSEs for LABs, the challenges and opportunities for synthesis and characterization, and future strategies are addressed.
传统锂空气电池(LABs)由于液体有机电解质的挥发性和泄漏、界面副产物的生成以及阳极锂枝晶穿透导致的短路等诸多问题,其循环性能和安全问题受到严重影响,这阻碍了其商业应用和发展。近年来,用于锂空气电池的固态电解质(SSEs)的出现很好地缓解了上述问题。固态电解质可以防止水分、氧气和其他污染物接触锂金属阳极,其固有性能可以解决锂枝晶的生成问题,使其成为高能量密度和安全锂空气电池发展的潜在候选材料。本文主要综述了用于锂空气电池的固态电解质的研究进展、合成与表征面临的挑战和机遇,并探讨了未来的策略。