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Growth of optically active multilayer metal oxide films on a plastic substrate

机译:在塑料基材上生长光学活性多层金属氧化物膜

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摘要

An optically active ITO/Au/ITO multilayer coating (where ITO stands for an indium tin oxide with the composition 90% In2O3 + 10% SnO2 and Au is nanoparticulate gold on a thin-film poly(ethylene terephthalate) substrate) has been prepared by a solution-phase process using an ITO nanopowder dispersion in isopropanol and a solution of chloroauric acid, which was converted to colloidal gold by photolysis. A sol-gel process has been proposed for the synthesis of tin-doped indium oxide nanopowder. The properties and composition of the powder were assessed by IR spectroscopy, thermal analysis, electron microscopy, and X-ray diffraction. The phase composition of the ITO nanopowder and the optical properties of the films grown using the nanopowder have been shown to depend on the thermal annealing conditions during synthesis. Layer-by-layer growth of metal oxide films in ITO/Au/ITO coatings influences the absorption in the composite in the IR spectral region.
机译:通过以下方法制备了光学活性ITO / Au / ITO多层涂层(其中ITO表示组成为90%In2O3 + 10%SnO2的铟锡氧化物,Au是薄膜聚对苯二甲酸乙二醇酯基底上的纳米颗粒金)。使用在异丙醇中的ITO纳米粉末分散体和氯金酸溶液进行溶液相处理,然后通过光解将其转化为胶体金。已经提出了溶胶-凝胶法用于合成锡掺杂的氧化铟纳米粉。通过红外光谱,热分析,电子显微镜和X射线衍射评估粉末的性质和组成。 ITO纳米粉的相组成和使用该纳米粉生长的薄膜的光学性能已显示出取决于合成过程中的热退火条件。 ITO / Au / ITO涂层中金属氧化物膜的逐层生长会影响复合材料在红外光谱区域的吸收。

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