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Recent progress in flame retardant technology of battery: A review
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作者 Weilin Liu Yan Jiang +1 位作者 Na Wang wanlu fu 《Resources Chemicals and Materials》 2023年第1期80-99,共20页
As one of the most popular research directions,the application safety of battery technology has attracted more and more attention,researchers in academia and industry are making efforts to develop safer flame retardan... As one of the most popular research directions,the application safety of battery technology has attracted more and more attention,researchers in academia and industry are making efforts to develop safer flame retardant battery.The battery consists of electrolyte,separator,electrode and shell,the traditional flame retardant method of battery is to modify the components to improve its flame safety.In this review,varied types of battery flame retardant technology are initially described,including the type of flame-retardants,flame retardant behaviors and flame retardant mechanisms.Latest research progress of various battery flame retardant technologies is summarized.Typical flame retardant approaches and important properties of flame retardant battery are reviewed as well.In addition,the current main challenges of the battery flame retardant technology in both academics and the industrial are analyzed carefully.In the end,the perspectives for future development of battery flame retardant technology are briefly discussed. 展开更多
关键词 Flame retardancy Lithium battery ELECTROLYTE SEPARATOR
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Application of nanomaterials in waterborne coatings:A review 被引量:1
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作者 Hongrui Yao Lijuan Li +3 位作者 Wanshen Li Duo Qi wanlu fu Na Wang 《Resources Chemicals and Materials》 2022年第2期184-200,共17页
Combining nanomaterials and waterborne resins is an effective way to obtain high-performance waterborne coatings. This paper provides a comprehensive overview on waterborne nanocomposite coatings based on the latest r... Combining nanomaterials and waterborne resins is an effective way to obtain high-performance waterborne coatings. This paper provides a comprehensive overview on waterborne nanocomposite coatings based on the latest research progress at home and abroad. Specifically, the characteristics of zero-dimensional (0D), one-dimensional (1D), two-dimensional (2D) and binary hybrid (0D/1D, 0D/2D, 1D/2D, 2D/2D) nanomaterials and their applications in waterborne coatings are coherently reviewed. Subsequently, various modification methods of nanomaterials, especially noncovalent modification and covalent modification, are analyzed in detail. Additionally, the enhancement mechanisms of nanomaterials enhancing the corrosion resistance of waterborne nanocomposite coatings are also discussed, including physical barrier mechanism and electrochemical mechanism. Finally, based on the above discussion, the outlooks for the future design of waterborne nanocomposite coating are presented. 展开更多
关键词 NANOMATERIAL Waterborne coating ANTICORROSION MODIFICATION Research progress
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