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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >TiO2/AZO bilayer thin films by magnetron sputtering as transparent electrodes for electrochromic devices
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TiO2/AZO bilayer thin films by magnetron sputtering as transparent electrodes for electrochromic devices

机译:TiO2 / AZO双层薄膜通过磁控溅射作为电致变色装置的透明电极

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Transparent electrodes are dominated by a single material indium tin oxide (ITO). Indium has been classified as a critical raw material by the EU, thus some alternative transparent conductor materials are urgently required. Aluminum zinc oxide (AZO) has emerged as promising substitute due to its high transmittance and low resistivity as well as its low cost and resource availability. However, manufacturing processes for some optoelectronic devices such as electrochromic devices or organic light emitting diodes, chemically attack the AZO layers due to their instability against acidic and basic solutions. Chemical and environmental stability of AZO coatings must be improved to guarantee long-term stability of the devices. In this paper, electrochromic devices based on viologen modified nanostructured TiO2 layers have been manufactured on bilayer electrodes formed by sputtering TiO2 protective films on AZO layers. A thin sputtering TiO2 layer does not electrically insulate the AZO but improves its stability and protects it from being attacked during the deposition of the nanostructured sol-gel TiO2, enabling the fabrication of EC devices that switch properly between a transparent, colorless and a green coloured state. Optical contrast (Delta T %) values up to 40% have been reached with an operating voltage of -1.5 V. (C) 2018 Elsevier Ltd. All rights reserved.
机译:透明电极由单一材料氧化铟锡(ITO)主导。欧盟已被欧盟被归类为关键原料的铟,因此迫切需要一些替代的透明导体材料。由于其高透射率和低电阻率以及其低成本和资源可用性,氧化铝氧化锌(AZO)作为有前途的替代品。然而,用于一些光电器件的制造方法,例如电致变色器件或有机发光二极管,通过对酸性和碱性溶液的不稳定性而化学攻击偶氮层。必须改善偶氮涂层的化学和环境稳定性,以保证装置的长期稳定性。在本文中,基于Viologen改性的纳米结构TiO2层的电致变色器件已经在通过在偶氮层上溅射TiO2保护膜形成的双层电极上制造。薄的溅射TiO2层不会电绝缘AZO,但在纳米结构溶胶 - 凝胶TiO2的沉积期间改善其稳定性并保护其免受攻击,从而能够在透明,无色和绿色彩色和绿色彩色和绿色彩色之间切换的EC器件进行制造。状态。光学对比度(Delta T%)最高可达40%的值,达到-1.5 V.(c)2018 Elsevier Ltd.保留所有权利。

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