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Design and development of in-situ temperature dependent diffuse reflectance spectroscopy setup

机译:原位温度依赖性漫反射光谱设置的设计与开发

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摘要

Recent advancements in the commercialization of In-situ temperature dependent optical spectrophotometer have shown potential not only for the recording of optical absorption spectra but also towards the exploration of physical insights and the understanding of instrument handling. Measurement on the effect of the variation of temperature onto optical properties mainly for semiconducting oxides helps to explore the functioning and play a crucial role towards the development of optoelectronic devices. Being a non-contact, non-destructive technique temperature dependent DRS Setup can be used as a primary tool for the in-situ characterization of optical properties. This appreciation prompts us to design and develop an instrument that can add the ability of in-situ temperature dependent DRS above room temperature. The setup, developed and reported here, is able to accurately characterize the samples from room temperature to 500 K, which is most suitable range for the characterization of semiconducting materials, which is in the heard of current materials' research. The present study provides the economical alternatives to the existing designs used for this purpose without compromising on the reliability of the obtained data. The in-house developed set up is found to be efficiently used for the analysis of various properties of the samples and will open up the instrumental development and commercialization of the temperature dependent DRS technique.
机译:原位温度依赖光学分子分光光度计的最新进展已经显示出不仅用于记录光学吸收光谱的潜力,而且旨在探索物理见解和对仪器处理的理解。测量温度变化对光学性质的影响主要用于半导体氧化物有助于探索功能,并对光电器件的发展发挥至关重要的作用。作为非接触式,无损技术温度依赖性DRS设置可用作光学特性的原位表征的主要工具。这一升值促使我们设计和开发一种可以增添室温的易受温度依赖性DRS的仪器的仪器。这里开发和报道的设置能够精确地表征来自室温的样品至500k,这是用于半导体材料表征的最合适的范围,这是当前材料的研究中听到的。本研究为现有设计提供了用于此目的的经济替代方案,而不会影响所获得的数据的可靠性。发现内部开发的设置有效地用于分析样品的各种性质,并将打开温度依赖性DRS技术的仪器开发和商业化。

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