材料科学
电极
光电子学
薄板电阻
氧化铟锡
纳米技术
纳米线
阳极
化学机械平面化
有机发光二极管
灵活的显示器
表面粗糙度
柔性电子器件
弯曲
纳米棒
溶解过程
工作职能
量子点
表面工程
数码产品
透射率
二极管
接触电阻
锡
表面光洁度
铟
图层(电子)
作者
Jiahui Du,Ruihao Yang,Mengyuan Gao,Yuanyuan Guo,Hua Wang,Yuying Hao,Bingshe Xu,Yanqin Miao
摘要
ABSTRACT The development of flexible electronics urgently requires high‐performance transparent electrodes to overcome the mechanical limitations and cost associated with indium tin oxide. Although silver nanowire (AgNW) networks are promising alternatives, their practical application remains challenged by high junction resistance, surface roughness, weak adhesion, and environmental instability. Here, we develop a multi‐functional interfacial engineering strategy, termed “rivet‐welding”, that integrates WS 2 nanosheets with AgNW network through capillary‐driven assembly and mechanical pressing. This process promotes AgNW embedding and surface planarization while strengthening the WS 2 /AgNW interface through Ag–S interactions, resulting in a composite electrode with a sheet resistance of 19.2 Ω sq −1 , a transmittance of 92.0%, and a low surface roughness of 7.1 nm, together with enhanced mechanical flexibility, thermal stability, oxidation resistance, and adhesion. As anodes for flexible phosphorescent OLEDs, the resulting electrodes enable green and red devices with external quantum efficiencies of 23.84% and 24.68%, respectively, while retaining 79% and 81% of their initial luminance after 1000 bending cycles without encapsulation. This work demonstrates an effective interfacial strategy for integrating 2D WS 2 nanosheets with AgNW networks and provides a practical route toward high‐performance flexible transparent electrodes for optoelectronic applications.
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