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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Determination of oxygen diffusion in the SnO2/stainless steel interface of thin films by spectrophotometric measurements
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Determination of oxygen diffusion in the SnO2/stainless steel interface of thin films by spectrophotometric measurements

机译:分光光度法测定SnO2 /不锈钢薄膜界面中的氧扩散

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摘要

Diffusion processes at high temperatures can change the transmittance and reflectance curves of multilayer coatings. These changes can significantly degrade coatings which use optical interference to obtain specific optical properties. This paper describes a study of the oxygen diffusion in SnO2/Sst interfaces using spectrophotometric measurements. A model is developed to optically describe the diffusion process in the multilayer interfaces. The validity of this model is checked experimentally using 16 samples exposed to temperatures between 475 degrees C and 600 degrees C for different exposure times: 5, 15, 50 and 120 min. Finally, these measurements are used to estimate the effective thickness of oxide formed at the interface due to oxygen diffusion, and to calculate the corresponding effective diffusion coefficients.
机译:高温下的扩散过程会改变多层涂层的透射率和反射率曲线。这些变化会使使用光学干涉以获得特定光学性能的涂料显着劣化。本文介绍了使用分光光度法对SnO2 / Sst界面中氧扩散的研究。开发了一个模型,以光学方式描述多层界面中的扩散过程。使用16个样品在475°C至600°C的温度下暴露5分钟,15分钟,50分钟和120分钟进行实验,验证了该模型的有效性。最后,这些测量值用于估计由于氧扩散而在界面处形成的氧化物的有效厚度,并计算相应的有效扩散系数。

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