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在柔性基板上对银纳米线进行激光冲击压制以制备高度均匀的透明导电电极薄膜。

Laser shock pressing of silver nanowires on flexible substrates to fabricate highly uniform transparent conductive electrode films.

作者信息

Noh Jihun, Kim Dongsik

机构信息

Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

出版信息

Nanotechnology. 2021 Apr 9;32(15):155303. doi: 10.1088/1361-6528/abd8ad.

Abstract

Large surface roughness, wire-to-wire junction resistance, and poor adhesion strength of percolated silver nanowire films on polymer substrates are critical issues responsible for low shunt resistance, electron concentration, and thermal damage, resulting in the occurrence of dark spots and damage to flexible electronic devices. Therefore, the fabrication of transparent conductive electrode (TCE) thin films with high surface smoothness and enhanced film properties without the aforementioned problems is essential. Herein, we propose an innovative method to mechanically join silver nanowires on heat-sensitive polymer substrates using a laser-induced shock pressure wave generated by laser ablation of a sacrificial layer. The physical joining mechanism and film properties, that is, sheet resistance, transmittance, adhesion strength, and flexibility, were experimentally analyzed. When a high laser shock pressure was applied to the silver nanowires, plastic deformation occurred; thus, a sintered network film was fabricated through solid-state atomic diffusion at the nanowire junctions. Under optimal process conditions, the sintered films showed high resistance to the adhesion tape test (R/R  = 1.15), a significantly reduced surface roughness less than 6 nm, and comparable electrical conductivity (8 ± 2 [Formula: see text]) and visible transmittance (84% ± 3%) to typical joining methods. Consequently, this work demonstrates that the laser-induced shock pressing technique has strong potential for the production of TCE metal films on heat-sensitive flexible substrates with film properties superior to those of films produced by conventional methods.

摘要

聚合物基底上的渗滤银纳米线薄膜具有较大的表面粗糙度、线对线结电阻以及较差的粘附强度,这些关键问题导致了低分流电阻、电子浓度和热损伤,进而造成柔性电子器件出现暗斑和损坏。因此,制造具有高表面光滑度且不存在上述问题的增强薄膜性能的透明导电电极(TCE)薄膜至关重要。在此,我们提出一种创新方法,利用牺牲层激光烧蚀产生的激光诱导冲击波压力波,在热敏聚合物基底上机械连接银纳米线。通过实验分析了物理连接机制和薄膜性能,即方阻、透过率、粘附强度和柔韧性。当对银纳米线施加高激光冲击压力时,会发生塑性变形;因此,通过纳米线结处的固态原子扩散制备出烧结网络薄膜。在最佳工艺条件下,烧结薄膜在胶带附着力测试中表现出高抗性(R/R = 1.15),表面粗糙度显著降低至小于6 nm,并且与典型连接方法相比,具有相当的电导率(8 ± 2 [公式:见原文])和可见光透过率(84% ± 3%)。因此,这项工作表明,激光诱导冲击压制技术在热敏柔性基底上生产TCE金属薄膜方面具有强大潜力,所制备薄膜的性能优于传统方法生产的薄膜。

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