材料科学
薄板电阻
电极
透射率
纳米线
光电子学
中尺度气象学
静电纺丝
纳米技术
导电体
金属
复合材料
聚合物
图层(电子)
冶金
化学
物理化学
气候学
地质学
作者
Po‐Chun Hsu,Shuang Wang,Hui Wu,V. Narasimhan,Desheng Kong,Hye Ryoung Lee,Yi Cui
摘要
For transparent conducting electrodes in optoelectronic devices, electrical sheet resistance and optical transmittance are two of the main criteria. Recently, metal nanowires have been demonstrated to be a promising type of transparent conducting electrode because of low sheet resistance and high transmittance. Here we incorporate a mesoscale metal wire (1–5 μm in diameter) into metal nanowire transparent conducting electrodes and demonstrate at least a one order of magnitude reduction in sheet resistance at a given transmittance. We realize experimentally a hybrid of mesoscale and nanoscale metal nanowires with high performance, including a sheet resistance of 0.36 Ω sq−1 and transmittance of 92%. In addition, the mesoscale metal wires are applied to a wide range of transparent conducting electrodes including conducting polymers and oxides with improvement up to several orders of magnitude. The metal mesowires can be synthesized by electrospinning methods and their general applicability opens up opportunities for many transparent conducting electrode applications. Decreasing sheet resistance and increasing light transmission are critical in transparent conducting electrodes. Here, a network of mesoscale metal nanowires are included in an array of metal nanowires, resulting in a low sheet resistance of 0.36 Ω sq−1and a high transmittance of 92%.
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