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作 者:朱伟伟[1] 张建 刘一凡[1] 吴于松[1] 王小红 胡慧斌 ZHU Wei-wei;ZHANG Jian;LIU Yi-fan;WU Yu-song;WANG Xiao-hong;HU Hui-bin(Zhejiang Research Institute of Chemical Industry Co.,Ltd.,Hangzhou,Zhejiang 310023,China;Sinochem Lantian Fluoro Materials Co.,Ltd.,Shaoxing,Zhejiang 312369,China)
机构地区:[1]浙江省化工研究院有限公司,浙江杭州310023 [2]中化蓝天氟材料有限公司,浙江绍兴312369
出 处:《浙江化工》2020年第10期26-32,共7页Zhejiang Chemical Industry
摘 要:随着电动汽车、人工智能和虚拟现实等新兴技术产业的快速发展和不断壮大,高功率、高容量、高安全的储能系统开发迫在眉睫。为了不断提高锂离子电池比容量和安全性能,业界对新型活性材料和电解液等材料关注较多,但对作为电池重要组成部分的粘结剂的研究较少。本文主要介绍了粘结剂的粘结机理和粘结剂种类,并展望了储能电子设备下一代粘结剂的发展前景。With the rapid development and continuous growth of emerging technology industries such as electric vehicles,artificial intelligence and virtual reality,the development of energy storage systems with high power,high capacity and high safety is extremely urgent.In order to continuously improve the specific capacity and safety performance of lithium ion batteries,the industry pays more attention to materials such as new active materials and electrolytes,but there is less research on the binder as an important part of the battery.In this article,the bonding mechanism and types of binders are introduced,and the development prospects of next generation of binders for energy storage electronic equipment is prospected.
分 类 号:TM912[电气工程—电力电子与电力传动]
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