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Anti-reflective coating with a conductive indium tin oxide layer on flexible glass substrates

机译:在柔性玻璃基板上具有导电铟锡氧化物层的抗反射涂层

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摘要

Flexible glass has many applications including photovoltaics, organic light-emitting device (OLED) lighting, and displays. Its ability to be processed in a roll-to-roll facility enables high-throughput continuous manufacturing compared to conventional glass processing. For photovoltaic, OLED lighting, and display applications, transparent conductors are required with minimal optical reflection losses. Here, we demonstrate an anti-reflective coating (ARC) that incorporates a useful transparent conductor that is realizable on flexible substrates. This reduces the average reflectivity to less than 6% over the visible band from normal incidence to incident angles up to 60 degrees. This ARC is designed by the average uniform algorithm method. The coating materials consist of a multilayer stack of an electrically functional conductive indium tin oxide with conductivity 2.95 x 10(5) Siemens/m (31 Omega/square), and AlSiO2. The coatings showed modest changes in reflectivity and no delamination after 10,000 bending cycles. This demonstrates that effective conductive layers can be integrated into ARCs and can be realized on flexible glass substrates with proper design and process control. (c) 2018 Optical Society of America
机译:柔性玻璃具有许多应用,包括光伏,有机发光器件(OLED)照明和显示器。与常规玻璃加工相比,它能够在滚动设施中处理的能力使得高通量连续制造。对于光伏,OLED照明和显示器应用,需要最小的光学反射损耗来需要透明导体。这里,我们证明了一种抗反射涂层(弧),其包括可在柔性基板上可实现的可实现的透明导体。这将平均反射率降低到从正常入射到60度的常规入射角的可见带小于6%。该电弧由平均均匀算法方法设计。涂层材料由电功能导电铟锡的多层叠层组成,电导率为2.95×10(5)Siemens / M(31ω/平方)和AlsiO2。涂层显示在10,000次弯曲循环后的反射率变化和没有分层。这表明可以将有效的导电层集成到弧中,并且可以在具有适当的设计和过程控制的柔性玻璃基板上实现。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第9期|共6页
  • 作者单位

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

    Corning Res &

    Dev Corp New York NY 14831 USA;

    Corning Res &

    Dev Corp New York NY 14831 USA;

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

    Binghamton Univ Watson Sch Engn &

    Appl Sci New York NY 13902 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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