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基于银纳米线交联聚丙烯酸酯复合材料的本征可拉伸透明电极。

Intrinsically stretchable transparent electrodes based on silver-nanowire-crosslinked-polyacrylate composites.

机构信息

Department of Materials Science and Engineering, Henry Samueli School of Engineering and Applied Science, University of California, Los Angeles, CA 90095, USA.

出版信息

Nanotechnology. 2012 Aug 31;23(34):344002. doi: 10.1088/0957-4484/23/34/344002. Epub 2012 Aug 10.

Abstract

Stretchable transparent composites have been synthesized consisting of a silver nanowire (AgNW) network embedded in the surface layer of a crosslinked poly(acrylate) matrix. The interpenetrating networks of AgNWs and the crosslinked polymer matrix lead to high surface conductivity, high transparency, and rubbery elasticity. The presence of carboxylic acid groups on the polymer chains enhances the bonding between AgNWs and the polymer matrix, and further increases the stretchability of the composites. The sheet resistance of the composite electrode increases by only 2.3 times at 50% strain. Repeated stretching to 50% strain and relaxation only causes a small increase of the sheet resistance after 600 cycles. The morphology of the composites during reversible stretching and relaxation has been investigated to expound the conductivity changes.

摘要

已合成了一种由交联聚丙烯酸酯基质表面层内嵌入的银纳米线(AgNW)网络组成的可拉伸透明复合材料。AgNW 和交联聚合物基质的互穿网络导致高表面导电性、高透明度和橡胶弹性。聚合物链上的羧酸基团增强了 AgNW 和聚合物基质之间的结合,进一步提高了复合材料的拉伸性。在 50%应变时,复合电极的面电阻仅增加 2.3 倍。在 600 次循环后,重复拉伸至 50%应变并松弛只会导致面电阻略有增加。研究了复合材料在可逆拉伸和松弛过程中的形态,以解释其电导率变化。

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