材料科学
光电子学
电极
透明度(行为)
纳米技术
有机发光二极管
透明导电膜
计算机科学
薄膜
计算机安全
物理化学
化学
图层(电子)
作者
Kiran A. Nirmal,Tukaram D. Dongale,Atul Chandrakant Khot,Chenjie Yao,Nahyun Kim,Tae Geun Kim
标识
DOI:10.1007/s40820-024-01525-y
摘要
Abstract Mechanically durable transparent electrodes are essential for achieving long-term stability in flexible optoelectronic devices. Furthermore, they are crucial for applications in the fields of energy, display, healthcare, and soft robotics. Conducting meshes represent a promising alternative to traditional, brittle, metal oxide conductors due to their high electrical conductivity, optical transparency, and enhanced mechanical flexibility. In this paper, we present a simple method for fabricating an ultra-transparent conducting metal oxide mesh electrode using self-cracking-assisted templates. Using this method, we produced an electrode with ultra-transparency (97.39%), high conductance ( R s = 21.24 Ω sq −1 ), elevated work function (5.16 eV), and good mechanical stability. We also evaluated the effectiveness of the fabricated electrodes by integrating them into organic photovoltaics, organic light-emitting diodes, and flexible transparent memristor devices for neuromorphic computing, resulting in exceptional device performance. In addition, the unique porous structure of the vanadium-doped indium zinc oxide mesh electrodes provided excellent flexibility, rendering them a promising option for application in flexible optoelectronics.
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