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SiO/TiO多层膜的光子响应与温度演变

Photonic response and temperature evolution of SiO/TiO multilayers.

作者信息

Christidis George, Fabrichnaya Olga B, Koepfli Stefan M, Poloni Erik, Winiger Joel, Fedoryshyn Yuriy M, Gusarov Andrey V, Ilatovskaia Mariia, Saenko Ivan, Savinykh Galina, Shklover Valery, Leuthold Juerg

机构信息

Institute of Electromagnetic Fields, ETH Zurich, Gloriastrasse 35, 8092 Zurich, Switzerland.

Institute of Material Sciences, Freiberg University of Mining and Technology, 09599 Freiberg, Germany.

出版信息

J Mater Sci. 2021;56(33):18440-18452. doi: 10.1007/s10853-021-06557-y. Epub 2021 Oct 7.

Abstract

UNLABELLED

The microstructural and optical reflectivity response of photonic SiO/TiO nanomultilayers have been investigated as a function of temperature and up to the material system's melting point. The nanomultilayers exhibit high, broadband reflectivities up to 1350 °C with values that exceed 75% for a 1 μm broad wavelength range (600-1600 nm). The optimized nanometer sized, dielectric multilayers undergo phase transformations from anatase TiO and amorphous SiO to the thermodynamically stable phases, rutile and cristobalite, respectively, that alter their structural morphology from the initial multilayers to that of a scatterer. Nonetheless, they retain their photonic characteristics, when characterized on top of selected substrate foils. The thermal behavior of the nanometer sized multilayers has been investigated by differential thermal analysis (DTA) and compared to that of commercially available, mm-sized, annealed powders. The same melting reactions were observed, but the temperatures were lower for the nm-sized samples. The samples were characterized using X-ray powder diffraction before DTA and after annealing at temperatures of 1350 and 1700 °C. The microstructural evolution and phase compositions were investigated by scanning electron microscopy and energy-dispersive X-ray spectroscopy measurements. The limited mutual solubility of one material to another, in combination with the preservation of their optical reflectivity response even after annealing, makes them an interesting material system for high-temperature, photonic coatings, such as photovoltaics, aerospace re-entry and gas turbines, where ultra-high temperatures and intense thermal radiation are present.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s10853-021-06557-y.

摘要

未标注

研究了光子SiO/TiO纳米多层膜的微观结构和光学反射率响应随温度的变化情况,直至材料体系的熔点。这些纳米多层膜在高达1350℃时表现出高宽带反射率,在1μm宽的波长范围(600 - 1600nm)内反射率值超过75%。优化后的纳米尺寸介电多层膜分别从锐钛矿TiO和非晶SiO发生相变,转变为热力学稳定相金红石和方石英,这使其结构形态从初始多层膜变为散射体。尽管如此,当在选定的基底箔片上进行表征时,它们仍保留其光子特性。通过差示热分析(DTA)研究了纳米尺寸多层膜的热行为,并与市售的毫米尺寸退火粉末的热行为进行了比较。观察到相同的熔化反应,但纳米尺寸样品的温度较低。在进行DTA之前以及在1350℃和1700℃退火后,使用X射线粉末衍射对样品进行了表征。通过扫描电子显微镜和能量色散X射线光谱测量研究了微观结构演变和相组成。一种材料与另一种材料的有限互溶性,以及即使在退火后仍保留其光学反射率响应,使其成为用于高温光子涂层的有趣材料体系,例如在存在超高温和强烈热辐射的光伏、航空航天再入和燃气轮机领域。

补充信息

在线版本包含可在10.1007/s10853-021-06557-y获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4f9/8550000/f405b8220772/10853_2021_6557_Fig1_HTML.jpg

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