首页> 外文期刊>Journal of nanoscience and nanotechnology >Solution-Processed Silver Nanowire/Indium-Tin-Oxide Nanoparticle Hybrid Transparent Conductors with High Thermal Stability
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Solution-Processed Silver Nanowire/Indium-Tin-Oxide Nanoparticle Hybrid Transparent Conductors with High Thermal Stability

机译:具有高热稳定性的溶液处理的银纳米线/铟锡氧化物纳米粒子混合透明导体

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摘要

In this study, solution-processed hybrid structure transparent conductors consisting of silver nanowires (AgNWs) and indium-tin-oxide nanoparticle (ITO-NP) layers are investigated. Fabricated transparent conductors had stacked structures of ITO-NP/AgNW and ITO-NP/AgNW/ITO-NP, and a successful integration was possible on glass substrates. Compared to a single-layered ITO-NP film which has a sheet resistance value of 1.31 k Ω/□, a remarkable enhancement in sheet resistance was achieved from the hybrid structures, showing sheet resistance values of 44.74 Ω/□ and 28.07 Ω/□ for ITO-NP/AgNW and ITO-NP/AgNW/ITO-NP structures, respectively. In addition, the ITO-NP/AgNW/ITO-NP triple-layered transparent conductor showed greatly enhanced thermal stability in terms of sheet resistance and transmittance against a high-temperature environment up to 300℃. Based on these results, it can be suggested that the hybrid structure has advantages of enhancing both electrical properties of ITO-NP layer and thermal stability of AgNW layer, and we believe the hybrid structure transparent conductors can be a suitable option for applications which require high electrical conductivity, transmittance, and thermal stability.
机译:在这项研究中,研究了由银纳米线(AgNWs)和铟锡氧化物纳米颗粒(ITO-NP)层组成的溶液处理混合结构透明导体。制成的透明导体具有ITO-NP / AgNW和ITO-NP / AgNW / ITO-NP的堆叠结构,并且可以在玻璃基板上成功集成。与具有1.31 kΩ/□的薄层电阻的单层ITO-NP薄膜相比,混合结构显着提高了薄层电阻,显示出44.74Ω/□和28.07Ω/□的薄层电阻分别用于ITO-NP / AgNW和ITO-NP / AgNW / ITO-NP结构。另外,ITO-NP / AgNW / ITO-NP三层透明导体在高达300℃的高温环境下的薄层电阻和透射率方面显示出极大的热稳定性。根据这些结果,可以认为混合结构具有增强ITO-NP层的电性能和AgNW层的热稳定性的优点,我们认为混合结构透明导体可以是要求高绝缘性的应用的合适选择。电导率,透射率和热稳定性。

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