首页> 外文期刊>Journal of Applied Polymer Science >Enhancing the interfacial bond strength of aluminum/polymer laminated film of the soft package lithium‐ion battery through polydopamine surface modification
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Enhancing the interfacial bond strength of aluminum/polymer laminated film of the soft package lithium‐ion battery through polydopamine surface modification

机译:通过聚多巴胺表面改性提高软包锂离子电池铝/聚合物层压薄膜的界面结合强度

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摘要

Abstract The aluminum (Al) foil used in Al/polymer laminated film of the soft package lithium‐ion battery (LIB) is widely treated with a hexavalent chromate conversion coating to increase the adhesive strength and durability of the adhesive joint. Given that hexavalent chromate is toxic and carcinogenic, a novel and chromate‐free method was developed in this study for surface modification of the Al foil using polydopamine (PDA) functionalization after titanium (Ti) chemical conversion. Ti conversion favors the deposition of PDA and introduces more functional groups of PDA on the Al surface. A novel polypropylene‐based hot melt adhesive, MAH‐g‐(PP/PBE), was prepared by melt grafting of maleic anhydride on the blend of polypropylene and propylene‐based elastomer for use as the inner adhesive of Al/polymer laminated film. Then, treated Al foil/MAH‐g‐(PP/PBE) composites were prepared and their interfacial adhesive strengths were investigated. The results show that the amine and catechol groups of PDA improve the interfacial adhesion between adhesive and Al foil by improving the wettability and interfacial interaction. The peel strength between MAH‐g‐(PP/PBE) and PDA functionalized Al foil after Ti conversion treatment can reach 3.55 N/mm, which is increased by 322 compared with that between MAH‐g‐PP and untreated Al foil. PDA functionalization after Ti chemical conversion and MAH‐g‐(PP/PBE) have great potential to improve interfacial adhesion of Al/polymer laminated film used in LIB package.
机译:摘要 对软包锂离子电池(LIB)铝/聚合物层压膜中使用的铝箔进行了广泛的六价铬酸盐转化涂层处理,以提高粘接接头的粘接强度和耐久性。鉴于六价铬酸盐具有毒性和致癌性,本研究开发了一种新型的无铬酸盐方法,用于钛(Ti)化学转化后使用聚多巴胺(PDA)官能团化对铝箔进行表面改性。Ti 转化有利于 PDA 的沉积,并在 Al 表面引入更多的 PDA 官能团。将马来酸酐熔融接枝在聚丙烯和丙烯基弹性体的共混物上,制备了一种新型聚丙烯基热熔胶MAH-g-(PP/PBE),用作铝/聚合物层压薄膜的内胶。然后,制备了经处理的铝箔/MAH-g-(PP/PBE)复合材料,并研究了其界面粘结强度。结果表明,PDA的胺基团和邻苯二酚基团通过改善润湿性和界面相互作用,改善了胶粘剂与铝箔之间的界面粘附性。Ti转化处理后,MAH-g‐(PP/PBE)与PDA功能化铝箔的剥离强度可达3.55 N/mm,与MAH-g‐PP和未处理的铝箔相比提高了322%。Ti化学转化后的PDA功能化和MAH-g-(PP/PBE)对提高锂离子电池封装中铝/聚合物层压薄膜的界面附着力具有巨大的潜力。

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