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具有高于99%透光率的均匀排列的基于银纳米线微电网的透明电极的经济高效制造。

Cost-Effective Fabrication of Uniformly Aligned Silver Nanowire Microgrid-Based Transparent Electrodes with Higher than 99% Transmittance.

作者信息

Feng Xueming, Wang Li, Huang Yan Yan Shery, Luo Yu, Ba Jiahao, Shi HaoTian Harvey, Pei Yuechen, Zhang Shuyuan, Zhang Zhaofa, Jia Xibei, Lu Bingheng

机构信息

Micro- and Nano-technology Research Center, State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, P. R. China.

National Innovation Institute of Additive Manufacturing, Xi'an 710000, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 31;14(34):39199-39210. doi: 10.1021/acsami.2c09672. Epub 2022 Aug 17.

Abstract

Silver nanowire (Ag NW)-based transparent electrodes (TEs) are promising alternatives to indium tin oxide (ITO) for next-generation flexible optoelectronic devices. Although many different constructs of Ag NW networks and post-treatment methods have been developed for TE applications, trade-offs between optical and electrical performance still remain. Herein, aided by electrohydrodynamic (EHD) printing, we present a cost-effective strategy to fabricate aligned Ag NW microgrids in a large area with excellent uniformity, resulting in superior optoelectronic properties. Guided by the percolation theory and simulation, we demonstrated that by confining aligned Ag NWs into a microgrid arrangement, the percolation threshold can be reduced significantly and adequate electrical conducting pathways can be achieved with an optimized combination of sheet resistance and optical transparency, which surpass conventional random Ag NW networks and random aligned Ag NW networks. The resulting TEs exhibit an ultrahigh transmittance of 99.1% at a sheet resistance of 91 Ω sq with extremely low nanowire usage, an areal mass density of only 8.3 mg m, and uniform spatial distribution. Based on this TE design, we demonstrated transparent heaters exhibiting rapid thermal response and superior uniformity in heat generation. Using UV-curable epoxy, highly flexible Ag NW-embedded TEs were fabricated with superior mechanical stabilities and low surface roughness of 2.6 nm. Bendable organic light-emitting diodes (OLEDs) are directly fabricated on these flexible Ag NW electrodes, with higher current efficiency (27.7 cd A) than ITO devices (24.8 cd A).

摘要

基于银纳米线(Ag NW)的透明电极(TE)是下一代柔性光电器件中氧化铟锡(ITO)的有前途的替代品。尽管已经开发了许多不同结构的Ag NW网络和后处理方法用于TE应用,但光学和电学性能之间的权衡仍然存在。在此,借助于电液动力学(EHD)打印,我们提出了一种经济高效的策略,以大面积制备排列整齐且均匀性极佳的Ag NW微电网,从而获得优异的光电性能。在渗流理论和模拟的指导下,我们证明,通过将排列整齐的Ag NW限制在微电网排列中,可以显著降低渗流阈值,并通过优化的薄层电阻和光学透明度组合实现足够的导电通路,这超过了传统的随机Ag NW网络和随机排列的Ag NW网络。所得的TE在薄层电阻为91Ω/sq时表现出99.1%的超高透过率,纳米线用量极低,面质量密度仅为8.3mg/m,且空间分布均匀。基于这种TE设计,我们展示了具有快速热响应和优异发热均匀性的透明加热器。使用紫外光固化环氧树脂,制备了具有优异机械稳定性和2.6nm低表面粗糙度的高度柔性的嵌入Ag NW的TE。可弯曲有机发光二极管(OLED)直接制备在这些柔性Ag NW电极上,其电流效率(27.7cd/A)高于ITO器件(24.8cd/A)。

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