Fan Zixin, Chen Xiaoyu, Shi Jingjing, Nie Hui, Zhang Xiaoming, Zhou Xingping, Xie Xiaolin, Xue Zhigang
Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, Hubei Key Laboratory of Material Chemistry and Service Failure, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan, 430074, People's Republic of China.
Shenzhen Senior Technology Material Co. Ltd., Shenzhen, 518000, People's Republic of China.
Nanomicro Lett. 2025 Feb 5;17(1):128. doi: 10.1007/s40820-024-01596-x.
The growing demands for energy storage systems, electric vehicles, and portable electronics have significantly pushed forward the need for safe and reliable lithium batteries. It is essential to design functional separators with improved mechanical and electrochemical characteristics. This review covers the improved mechanical and electrochemical performances as well as the advancements made in the design of separators utilizing a variety of techniques. In terms of electrolyte wettability and adhesion of the coating materials, we provide an overview of the current status of research on coated separators, in situ modified separators, and grafting modified separators, and elaborate additional performance parameters of interest. The characteristics of inorganics coated separators, organic framework coated separators and inorganic-organic coated separators from different fabrication methods are compared. Future directions regarding new modified materials, manufacturing process, quantitative analysis of adhesion and so on are proposed toward next-generation advanced lithium batteries.
对储能系统、电动汽车和便携式电子产品不断增长的需求,极大地推动了对安全可靠锂电池的需求。设计具有改进的机械和电化学特性的功能隔膜至关重要。本综述涵盖了利用各种技术在隔膜设计方面取得的改进的机械和电化学性能以及进展。在电解质润湿性和涂层材料的附着力方面,我们概述了涂层隔膜、原位改性隔膜和接枝改性隔膜的研究现状,并阐述了其他感兴趣的性能参数。比较了不同制备方法的无机涂层隔膜、有机框架涂层隔膜和无机-有机涂层隔膜的特性。针对下一代先进锂电池,提出了关于新型改性材料、制造工艺、附着力定量分析等方面的未来发展方向。