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首页> 外文期刊>Advances in condensed matter physics >Effect of Silver Nanowire Plasmons on Graphene Oxide Coatings Reduction for Highly Transparent Electrodes
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Effect of Silver Nanowire Plasmons on Graphene Oxide Coatings Reduction for Highly Transparent Electrodes

机译:纳米银等离子对高透明电极上氧化石墨烯涂层还原的影响

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We prepared transparent conducting composite electrodes composed of silver nanowires (Ag NWs) and reduced graphene oxide (r-GO). We present a simple approach to welding the cross-positions of the Ag NWs by applying pressure at a relatively low temperature (100°C). We examined the Ag NWs/r-GO composite films in terms of their transmission, conductivity, and stability. The plasmonic features of the Ag NWs were used to assist the ultraviolet (UV) light-induced reduction of the GO coating. The r-GO coatings used to form Ag NWs/r-GO composite structures increased the conductivity of the film by providing more efficient electron conductive pathways. The G/D intensity ratios of the GO and r-GO produced by the UV light-induced method without and with Ag NWs were 0.95, 1.01, and 1.04, respectively. The lowest sheet resistance of the composite films was 7 ohm/sq with approximately 82% transparency in the visible spectrum region. No degradation of the films was observed after 2 months. This excellent environmental stability might facilitate applications of Ag NWs/r-GO composite films in optoelectronic devices.
机译:我们准备了由银纳米线(Ag NWs)和还原氧化石墨烯(r-GO)组成的透明导电复合电极。我们提出了一种通过在相对较低的温度(100°C)下施加压力来焊接Ag NWs交叉位置的简单方法。我们研究了Ag NWs / r-GO复合膜的透射率,导电性和稳定性。 Ag NWs的等离子体特征用于协助紫外线(UV)诱导的GO涂层还原。用于形成Ag NWs / r-GO复合结构的r-GO涂层通过提供更有效的电子传导途径来提高薄膜的电导率。在不使用和使用Ag NW的情况下,通过紫外线诱导的方法产生的GO和r-GO的G / D强度比分别为0.95、1.01和1.04。复合膜的最低薄层电阻为7 ohm / sq,在可见光谱范围内的透明度约为82%。 2个月后未观察到膜的降解。这种出色的环境稳定性可能会促进Ag NWs / r-GO复合膜在光电设备中的应用。

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