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TiO _2 coatings with Au nanoparticles analysed by photothermal IR radiometry

机译:光热红外辐射分析金纳米颗粒的TiO _2涂层

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摘要

Optically active Au:TiO _2 nanocomposite thin films with an amount of gold of about 15at% were prepared by dc reactive magnetron sputtering. After the deposition, the samples were annealed in vacuum at different constant temperatures between 200 and 800°C. Depending on the annealing temperature, considerable changes have been found in the films' crystalline structure and for the number, the shape and the dimensions of the Au clusters. Modulated IR Radiometry (MIRR), a non-contact, non-destructive modulation-frequency-dependent photothermal measurement technique, was used for the characterization of the thermo-optical depth profiles of the as-deposited and annealed samples. Based on the results of MIRR, it was possible to establish correlations of the measured thermo-optical depth profiles with various effects: the heat treatment induced progress of crystallization of the TiO _2 matrix, the evolution of Au nanoparticles and strong subsurface heat sources related to the surface plasmon resonance (SPR) effect. For the annealing temperature of 800°C, a diffusion and accumulation of gold just at the surface was found, which contributes to limit the subsurface heat sources and the SPR effect.
机译:通过直流反应磁控溅射制备了金含量约为15at%的光学活性Au:TiO _2纳米复合薄膜。沉积后,将样品在200至800°C之间的不同恒定温度下真空退火。根据退火温度,已发现薄膜的晶体结构以及金簇的数量,形状和尺寸发生了显着变化。调制红外辐射(MIRR)是一种非接触,非破坏性的依赖于调制频率的光热测量技术,用于表征沉积和退火样品的热光深度剖面。根据MIRR的结果,可以建立具有各种影响的热光学深度分布的相关性:热处理引起TiO _2基体的结晶进展,Au纳米颗粒的演化以及与之相关的强地下热源表面等离子体共振(SPR)效应。在800℃的退火温度下,发现金仅在表面扩散和积累,这有助于限制地下热源和SPR效应。

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