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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Coupled effects of deposition and annealing temperatures on optical, electrical and mechanical properties of titanium oxide thin films
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Coupled effects of deposition and annealing temperatures on optical, electrical and mechanical properties of titanium oxide thin films

机译:沉积温度和退火温度对氧化钛薄膜光学,电和机械性能的耦合影响

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In this study the influence of deposition temperature and a post-deposition annealing process on the optical, electrical, mechanical, and tribological properties of titanium oxide thin films was investigated. Based on high-resolution XPS, it was observed that the films became more metallic as the deposition temperature was raised from 15 to 450 degrees C. Moreover, the mechanical and tribological properties of the film deposited at 450 degrees C were at least 50% greater than for the film deposited at 15 degrees C. After annealing at 450 degrees C for 30 min in air, the films all became transparent and insulating. However, the annealing process had mixed effects on the mechanical and tribological properties such that the 15 and 250 degrees C films softened, but the 450 degrees C film hardened. This mixed trend is attributed to the different as-deposited film stoichiometries. The results show that the coupled effects of deposition temperature and post-deposition annealing are quite complex and that the mechanical properties of TiO2 thin films can be controlled independently of their optical and electrical properties. This is important because TiO2 coatings are often used as the outer-most layers in optical devices. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了沉积温度和沉积后退火工艺对氧化钛薄膜的光学,电学,机械和摩擦学性能的影响。基于高分辨率XPS,观察到随着沉积温度从15升高到450摄氏度,薄膜变得更加金属化。此外,在450摄氏度下沉积的薄膜的机械和摩擦学性能至少提高了50%与在15摄氏度下沉积的薄膜相比,该薄膜在空气中在450摄氏度下退火30分钟后,所有薄膜均变得透明和绝缘。但是,退火工艺对机械和摩擦学性能具有混合影响,例如15和250摄氏度的薄膜变软,而450摄氏度的薄膜变硬。这种混合趋势归因于不同的沉积薄膜化学计量。结果表明,沉积温度和沉积后退火的耦合效应非常复杂,并且可以独立于其光学和电学性质控制TiO2薄膜的机械性能。这很重要,因为TiO2涂层通常用作光学设备的最外层。 (C)2015 Elsevier Ltd.保留所有权利。

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