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图案化、柔性且可拉伸的银纳米线/聚合物复合薄膜用作透明导电电极。

Patterned, Flexible, and Stretchable Silver Nanowire/Polymer Composite Films as Transparent Conductive Electrodes.

作者信息

Chen Yiting, Carmichael R Stephen, Carmichael Tricia Breen

机构信息

Department of Chemistry and Biochemistry , University of Windsor , Windsor , Ontario N9B 3P4 , Canada.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 28;11(34):31210-31219. doi: 10.1021/acsami.9b11149. Epub 2019 Aug 15.

DOI:10.1021/acsami.9b11149
PMID:31373786
Abstract

The emergence of flexible and stretchable optoelectronics has motivated the development of new transparent conductive electrodes (TCEs) to replace conventional brittle indium tin oxide. For modern optoelectronics, these new TCEs should possess six key characteristics: low cost, solution-based processing; high transparency; high electrical conductivity; a smooth surface; mechanical flexibility or stretchability; and scalable, low-cost patterning methods. Among many materials currently being studied, silver nanowires (AgNWs) are one of the most promising, with studies demonstrating AgNW films and composites that exhibit each of the key requirements. However, AgNW-based TCEs reported to date typically fulfill two or three requirements at the same time, and rare are examples of TCEs that fulfill all six requirements simultaneously. Here, we present a straightforward method to fabricate AgNW/polymer composite films that meet all six requirements simultaneously. Our fabrication process embeds a AgNW network patterned using a solution-based wetting-dewetting protocol into a flexible or stretchable polymer, which is then adhered to an elastomeric poly(dimethylsiloxane) substrate. The resulting patterned AgNW/polymer films exhibit ∼85% transmittance with an average sheet resistance of ∼15 Ω/sq, a smooth surface (a root-mean-square surface roughness value of ∼22 nm), and also withstand up to 71% bending strain or 70% stretching strain. We demonstrate the use of these new TCEs in flexible and stretchable alternating current electroluminescent devices that emit light to 20% bending strain and 60% stretching strain.

摘要

柔性和可拉伸光电子器件的出现推动了新型透明导电电极(TCE)的发展,以取代传统的脆性氧化铟锡。对于现代光电子器件而言,这些新型TCE应具备六个关键特性:低成本、基于溶液的加工工艺;高透明度;高导电性;表面光滑;机械柔韧性或可拉伸性;以及可扩展的低成本图案化方法。在目前正在研究的众多材料中,银纳米线(AgNWs)是最有前景的材料之一,已有研究表明AgNW薄膜和复合材料满足了各项关键要求。然而,迄今为止报道的基于AgNW的TCE通常只能同时满足两三个要求,同时满足所有六个要求的TCE实例很少。在此,我们提出了一种直接的方法来制备同时满足所有六个要求的AgNW/聚合物复合薄膜。我们的制备工艺将通过基于溶液的润湿性-去润湿性协议图案化的AgNW网络嵌入到柔性或可拉伸的聚合物中,然后将其粘附到弹性聚二甲基硅氧烷基板上。所得的图案化AgNW/聚合物薄膜具有约85%的透光率,平均方阻约为15Ω/sq,表面光滑(均方根表面粗糙度值约为22nm),并且还能承受高达71%的弯曲应变或70%的拉伸应变。我们展示了这些新型TCE在柔性和可拉伸交流电致发光器件中的应用,这些器件在20%的弯曲应变和60%的拉伸应变下仍能发光。

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