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首页> 外文期刊>Thin Solid Films >Rapid Thermal Processing Of Nano-crystalline Indium Tin Oxide Transparent Conductive Oxide Coatings On Glass By Flame Impingement Technology
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Rapid Thermal Processing Of Nano-crystalline Indium Tin Oxide Transparent Conductive Oxide Coatings On Glass By Flame Impingement Technology

机译:火焰碰撞技术快速热处理玻璃上纳米晶铟锡氧化物透明导电氧化物涂层

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摘要

Indium tin oxide (ITO) is still the best suited material for transparent conductive oxides, when high transmission in the visible range, high infrared reflection or high electrical conductivity is needed. Current approaches on powder-based printable ITO coatings aim at minimum consumption of active coating and low processing costs. The paper describes how fast firing by flame impingement is used for effective sintering of ITO-coatings applied on glass. The present study correlates process parameters of fast firing by flame impingement with optoelectronic properties and changes in the microstructure of suspension derived nano-particulate films. With optimum process parameters the heat treated coatings had a sheet resistance below 0.5 kΩ/□ combined with a transparency higher than 80%. To characterize the influence of the burner type on the process parameters and the coating functionality, two types of methane/oxygen burner were compared: a diffusion burner and a premixed burner.
机译:铟锡氧化物(ITO)仍然是最适合透明导电氧化物的材料,当需要在可见光范围内进行高透射率,需要高红外反射率或高电导率时。基于粉末的可印刷ITO涂层的当前方法旨在降低活性涂层的消耗并降低加工成本。该论文描述了通过火焰撞击快速烧制如何有效烧结玻璃上的ITO涂层。本研究将火焰冲击快速烧制的工艺参数与光电性能以及悬浮液衍生的纳米颗粒薄膜的微观结构变化联系起来。采用最佳工艺参数,热处理后的涂层的薄层电阻低于0.5kΩ/□,透明度高于80%。为了表征燃烧器类型对工艺参数和涂层功能的影响,比较了两种类型的甲烷/氧气燃烧器:扩散燃烧器和预混合燃烧器。

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