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首页> 外文期刊>Nanoscale Research Letters >Facile Synthesis of Ultralong and Thin Copper Nanowires and Its Application to High-Performance Flexible Transparent Conductive Electrodes
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Facile Synthesis of Ultralong and Thin Copper Nanowires and Its Application to High-Performance Flexible Transparent Conductive Electrodes

机译:超长细铜纳米线的简便合成及其在高性能柔性透明导电电极中的应用

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A hydrothermal method for synthesizing ultralong and thin copper nanowires (CuNWs) with average diameter of 35 nm and average length of 100 μ m is demonstrated in this paper. The concerning raw materials include copric (II) chloride dihydrate (CuCl~(2)·2H~(2)O), octadecylamine (ODA), and ascorbic acid, which are all very cheap and nontoxic. The effect of different reaction time and different molar ratios to the reaction products were researched. The CuNWs prepared by the hydrothermal method were applied to fabricate CuNW transparent conductive electrode (TCE), which exhibited excellent conductivity-transmittance performance with low sheet resistance of 26.23 Ω / □ $Omega /square $ and high transparency at 550 nm of 89.06% (excluding Polyethylene terephthalate (PET) substrate). The electrode fabrication process was carried out at room temperature, and there was no need for post-treatment. In order to decrease roughness and protect CuNW TCEs against being oxidized, we fabricated CuNW/poly(methyl methacrylate) (PMMA) hybrid TCEs (HTCEs) using PMMA solution. The CuNW/PMMA HTCEs exhibited low surface roughness and chemical stability as compared with CuNW TCEs.
机译:本文介绍了一种水热法合成平均直径为35 nm,平均长度为100μm的超长和细铜纳米线(CuNWs)。涉及的原料包括二水合氯化铜(II)(CuCl〜(2)·2H〜(2)O),十八烷基胺(ODA)和抗坏血酸,它们都很便宜且无毒。研究了不同反应时间和不同摩尔比对反应产物的影响。通过水热法制备的CuNWs被用于制备CuNW透明导电电极(TCE),该电极表现出优异的电导率-传输性能,具有26.23Ω/□Ω/Ω/□的低薄层电阻和在550 nm处具有89.06的高透明性%(不包括聚对苯二甲酸乙二酯(PET)基材)。电极制造过程在室温下进行,不需要后处理。为了降低粗糙度并保护CuNW TCE不被氧化,我们使用PMMA溶液制造了CuNW /聚甲基丙烯酸甲酯(PMMA)杂化TCE(HTCE)。与CuNW TCE相比,CuNW / PMMA HTCE具有较低的表面粗糙度和化学稳定性。

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