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大面积纵横交错的银纳米线电极,用于灵活、透明、力敏的压敏变色触摸屏幕。

Large-Area Cross-Aligned Silver Nanowire Electrodes for Flexible, Transparent, and Force-Sensitive Mechanochromic Touch Screens.

机构信息

Department of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST) , Ulsan Metropolitan City 689-798, Republic of Korea.

Department of Chemistry, Duke University , Durham, North Carolina 27708, United States.

出版信息

ACS Nano. 2017 Apr 25;11(4):4346-4357. doi: 10.1021/acsnano.7b01714. Epub 2017 Apr 12.

Abstract

Silver nanowire (AgNW) networks are considered to be promising structures for use as flexible transparent electrodes for various optoelectronic devices. One important application of AgNW transparent electrodes is the flexible touch screens. However, the performances of flexible touch screens are still limited by the large surface roughness and low electrical to optical conductivity ratio of random network AgNW electrodes. In addition, although the perception of writing force on the touch screen enables a variety of different functions, the current technology still relies on the complicated capacitive force touch sensors. This paper demonstrates a simple and high-throughput bar-coating assembly technique for the fabrication of large-area (>20 × 20 cm), highly cross-aligned AgNW networks for transparent electrodes with the sheet resistance of 21.0 Ω sq at 95.0% of optical transmittance, which compares favorably with that of random AgNW networks (sheet resistance of 21.0 Ω sq at 90.4% of optical transmittance). As a proof of concept demonstration, we fabricate flexible, transparent, and force-sensitive touch screens using cross-aligned AgNW electrodes integrated with mechanochromic spiropyran-polydimethylsiloxane composite film. Our force-sensitive touch screens enable the precise monitoring of dynamic writings, tracing and drawing of underneath pictures, and perception of handwriting patterns with locally different writing forces. The suggested technique provides a robust and powerful platform for the controllable assembly of nanowires beyond the scale of conventional fabrication techniques, which can find diverse applications in multifunctional flexible electronic and optoelectronic devices.

摘要

银纳米线(AgNW)网络被认为是有前途的结构,可作为各种光电设备的柔性透明电极。AgNW 透明电极的一个重要应用是柔性触摸屏。然而,柔性触摸屏的性能仍然受到随机网络 AgNW 电极的大表面粗糙度和低电-光导率比的限制。此外,尽管在触摸屏上感知书写力可以实现各种不同的功能,但当前的技术仍然依赖于复杂的电容力触摸传感器。本文展示了一种简单且高通量的棒涂组装技术,用于制造大面积(>20×20cm)、高度交叉对齐的 AgNW 网络,用于透明电极,其方阻为 21.0Ω/sq,透光率为 95.0%,与随机 AgNW 网络(方阻为 21.0Ω/sq,透光率为 90.4%)相比具有优势。作为概念验证演示,我们使用机械变色螺吡喃-聚二甲基硅氧烷复合膜集成的交叉对齐 AgNW 电极制造了柔性、透明和力敏触摸屏。我们的力敏触摸屏能够精确监测动态书写、跟踪和绘制下面的图片,并感知具有局部不同书写力的手写模式。所提出的技术为超越传统制造技术规模的纳米线可控组装提供了一个强大的平台,可在多功能柔性电子和光电设备中找到多种应用。

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