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Conductive and transparent multilayer films for low-temperature TiO2/Ag/SiO2 electrodes by E-beam evaporation with IAD

机译:IAD电子束蒸发低温TiO2 / Ag / SiO2电极用透明导电多层膜

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摘要

Conductive and transparent multilayer thin films consisting of three alternating layers (TiO2/Ag/SiO2, TAS) have been fabricated for applications as transparent conducting oxides. Metal oxide and metal layers were prepared by electron-beam evaporation with ion-assisted deposition, and the optical and electrical properties of the resulting films as well as their energy bounding characteristics and microstructures were carefully investigated. The optical properties of the obtained TAS material were compared with those of well-known transparent metal oxide glasses such as ZnO/Ag/ZnO, TiO2/Ag/TiO2, ZnO/Cu/ZnO, and ZnO/Al/ZnO. The weathering resistance of the TAS film was improved by using a protective SiO2 film as the uppermost layer. The transmittance spectra and sheet resistance of the material were carefully measured and analyzed as a function of the layer thickness. By properly adjusting the thickness of the metal and dielectric films, a low sheet resistance of 6.5 ohm/sq and a high average transmittance of over 89% in the 400 to 700 nm wavelength regions were achieved. We found that the Ag layer played a significant role in determining the optical and electrical properties of this film.
机译:由三层交替层(TiO2 / Ag / SiO2,TAS)组成的透明导电多层薄膜已经制成透明导电氧化物。通过电子束蒸发和离子辅助沉积制备金属氧化物和金属层,并仔细研究了所得薄膜的光学和电学性质以及其能量束缚特性和微观结构。将获得的TAS材料的光学性质与诸如ZnO / Ag / ZnO,TiO2 / Ag / TiO2,ZnO / Cu / ZnO和ZnO / Al / ZnO的众所周知的透明金属氧化物玻璃的光学性质进行比较。通过使用保护性的SiO2膜作为最上层,可改善TAS膜的耐候性。仔细测量材料的透射光谱和薄层电阻,并作为层厚度的函数进行分析。通过适当地调整金属和介电膜的厚度,在400至700 nm波长范围内实现了6.5 ohm / sq的低薄层电阻和超过89%的高平均透射率。我们发现,银层在确定该膜的光学和电学性质方面起着重要作用。

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