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银纳米线/氧化钌纳米片杂化薄膜的低漫反射率,用于高性能透明柔性电极。

Low diffuse reflection of silver nanowire/ruthenium oxide nanosheet hybrid films for high-performance transparent flexible electrodes.

机构信息

Platform Technology Lab, Samsung Advanced Institute of Technology, 120 Samsung-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do 443-803, Republic of Korea.

出版信息

Nanotechnology. 2019 Jan 4;30(1):015301. doi: 10.1088/1361-6528/aae56f. Epub 2018 Oct 1.

DOI:10.1088/1361-6528/aae56f
PMID:30272575
Abstract

Transparent conducting electrodes (TCEs) based on silver nanowire (AgNW) networks possess high conductance, transmittance, and mechanical flexibility. However, due to the relatively high diffuse reflection of incident light on AgNWs, they cannot be practically implemented in displays requiring low pattern visibility. One promising strategy for solving this problem is to place an optical stack with high refractive index underneath the AgNW layer. In this work, AgNW-RuO nanosheet hybrid TCEs with low diffuse reflections are fabricated using metallic RuO nanosheets as undercoats. As predicted by theoretical simulations, RuO nanosheets with high refractive indices reduce the diffuse reflections of AgNWs by almost 8%. Moreover, after the partial etching of AgNWs, the difference in the diffuse reflections of their etched and non-etched regions becomes equal to about 0.003, leading to the formation of an invisible pattern. The film consisting of micro-sized RuO nanosheets is not damaged during etching, but instead forms a current path between different AgNWs broken by cyclic bending, resulting in a tenfold decrease in the resistance of the AgNW TCE after 170 000 cycles. Further, RuO nanosheets suppress the diffusion of humid air from the outside, thus improving the environmental stability of the AgNW-RuO nanosheet hybrid TCEs.

摘要

基于银纳米线 (AgNW) 网络的透明导电电极 (TCE) 具有高导电性、透光率和机械柔韧性。然而,由于 AgNW 对入射光的相对较高的漫反射,它们不能实际应用于需要低图案可见度的显示器中。解决这个问题的一种有前途的策略是在 AgNW 层下方放置具有高折射率的光学堆叠。在这项工作中,使用金属 RuO 纳米片作为底层来制备具有低漫反射的 AgNW-RuO 纳米片混合 TCE。正如理论模拟所预测的,高折射率的 RuO 纳米片将 AgNW 的漫反射降低了近 8%。此外,在部分蚀刻 AgNW 之后,其蚀刻和未蚀刻区域的漫反射差异变得相等,约为 0.003,从而形成不可见的图案。在蚀刻过程中,由微尺寸 RuO 纳米片组成的薄膜不会损坏,而是在循环弯曲破坏的不同 AgNW 之间形成电流路径,导致 AgNW TCE 的电阻在 170000 次循环后降低了十倍。此外,RuO 纳米片抑制了来自外部的潮湿空气的扩散,从而提高了 AgNW-RuO 纳米片混合 TCE 的环境稳定性。

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