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Simultaneous improvement of the electrical conductivity and mechanical properties via double-bond introduction in the electrically conductive adhesives

机译:通过双键引入导电粘合剂同时改善电导率和机械性能

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摘要

For electrically conductive adhesives (ECAs), high electrical conductivity generally conflicts with excellent mechanical properties because electrical conductivity increases while desirable mechanical properties decrease with the increase in loading of conductive fillers or removal of lubricants on the silver filler surface. In this work, a method was developed to improve both the electrical conductivity and mechanical properties of the ECAs by introducing double bonds. Itaconic acid (IA) was used to replace the lubricant on the silver flake (Ag-F) surface, and acrylic acid (AA) was used as part of the ECA resin matrix. IA can replace the lubricant on the Ag-F surface, similar to other short-chain dibasic acids, to improve the ECA electrical conductivity. Furthermore, IA can be polymerized with AA to form covalent bonds between the silver flakes and the resin matrix, enhancing the mechanical properties of ECA. Compared with ECA filled with commercial silver flakes, the electrical conductivity of ECA filled with IA-treated silver flakes increased by~21%, and the lap shear strength increased by~29%.
机译:对于导电粘合剂(ECA),高电导率通常与优异的机械性能冲突,因为导电性增加,而导电性能随着导电填料的负载增加或在银填料表面上除去润滑剂而降低。在这项工作中,开发了一种方法以通过引入双键来改善ECA的电导率和机械性能。使用衣康酸(IA)在银片(Ag-F)表面上替换润滑剂,并使用丙烯酸(AA)作为ECA树脂基质的一部分。 IA可以替代Ag-F表面上的润滑剂,类似于其他短链二元酸,以提高ECA电导率。此外,IA可以用AA聚合,形成银薄片和树脂基质之间的共价键,增强了ECA的机械性能。与填充商业银薄片的ECA相比,填充IA处理的银薄片的ECA的导电性增加〜21%,腿部剪切强度增加〜29%。

著录项

  • 来源
    《Journal of materials science》 |2020年第11期|8923-8932|共10页
  • 作者单位

    Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China Guangdong Province Key Laboratory of Industrial Surfactant Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China;

    Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China Guangdong Province Key Laboratory of Industrial Surfactant Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China;

    Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China Guangdong Province Key Laboratory of Industrial Surfactant Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China;

    Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China Guangdong Province Key Laboratory of Industrial Surfactant Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China;

    Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China Guangdong Province Key Laboratory of Industrial Surfactant Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China;

    Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China Guangdong Province Key Laboratory of Industrial Surfactant Guangdong Research Institute of Petrochemical and Fine Chemical Engineering Guangzhou 510665 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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