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研究棒状包覆银纳米线基透明导电薄膜的光学和电学性能。

Investigating the optical and electrical performance of rod coated silver nanowire-based transparent conducting films.

作者信息

Thomas Neethu, S Bharathkumar, Mathew Koshy Aarju, Basavaraj Madivala G, Swaminathan Parasuraman

机构信息

Electronic Materials and Thin Films Lab Department of Metallurgical and Materials Engineering, Indian Institute of Technology Madras, Chennai 600036 India.

Polymer Engineering and Colloidal Science Lab, Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai, India.

出版信息

Nanotechnology. 2024 Aug 30;35(46). doi: 10.1088/1361-6528/ad7142.

Abstract

Silver nanowires (Ag NWs) are highly promising building blocks for developing transparent conducting films (TCFs) due to their high electrical conductivity and good optical transparency. The large-scale production of Ag NW-based high-quality TCFs using low-cost processing methods can replace the traditional oxide based TCFs. Therefore, developing a reliable technique for large-scale fabrication of Ag NW-based TCFs is vital. This work involves the synthesis of Ag NWs, the fabrication of large-area Ag NW-based TCFs using a simple rod coating process, its optimization, and the performance analysis of the fabricated TCFs, including their demonstration as transparent heaters. The polyol synthesis method produces Ag NWs of lengths ranging from 25-110m and diameters from 80-180 nm. The effect of Ag NW length, the number of coating passes, and the volume of the NW dispersion used per coating pass on the electrical and optical properties of the TCFs are studied by quantifying sheet resistance(Rs)and transmittance () of the film. The performance of the fabricated film is evaluated by estimating the figure of merit (FoM) in both percolative and bulk regimes. The TCF made with NWs of length 25.7m and diameter 85.1 nm had the largest value of bulk FoM (101.3), percolative FoM (43.9), and, conductivity exponent (0.6). This elucidated the superior performance of the fabricated TCFs over those fabricated by other techniques. The critical thickness of the film (tmin), at the crossover between the percolation and bulk, scales with the shortest dimension of the NW, namely its diameter. The percolative FoM showed an increase, with a decrease in both sheet resistance and diameter of the NWs, with lower. The fabricated TCF is tested as a transparent heater and the demonstration proves that rod coated Ag NW-based TCFs can be used for transparent electrode applications.

摘要

银纳米线(Ag NWs)因其高导电性和良好的光学透明度,是开发透明导电薄膜(TCFs)极具前景的构建材料。采用低成本加工方法大规模生产基于Ag NWs的高质量TCFs可替代传统的氧化物基TCFs。因此,开发一种可靠的大规模制造基于Ag NWs的TCFs的技术至关重要。这项工作包括Ag NWs的合成、使用简单的棒涂工艺制造大面积基于Ag NWs的TCFs、对其进行优化以及对制造的TCFs进行性能分析,包括将其作为透明加热器进行演示。多元醇合成法生产的Ag NWs长度范围为25 - 110μm,直径为80 - 180nm。通过量化薄膜的方阻(Rs)和透过率(),研究了Ag NW长度、涂覆道次数量以及每次涂覆道次所用NW分散体的体积对TCFs电学和光学性能的影响。通过估计渗流和体相状态下的品质因数(FoM)来评估制造薄膜的性能。由长度为25.7μm、直径为85.1nm的NWs制成的TCF具有最大的体相FoM值(101.3)、渗流FoM值(43.9)和电导率指数(0.6)。这阐明了所制造的TCFs相对于其他技术制造的TCFs具有卓越的性能。在渗流和体相的交叉点处,薄膜的临界厚度(tmin)与NW的最短尺寸即其直径成比例。渗流FoM随着方阻和NWs直径的减小而增加,且透过率较低。所制造的TCF作为透明加热器进行了测试,演示证明基于棒涂Ag NWs的TCFs可用于透明电极应用。

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