螺旋弧离子等离子体法在聚合物基体上形成纳米结构功能薄膜涂层

Z. Tsybrii, M. Vuichyk, K. Svezhentsova, F. Sizov, I. Korotash, E. Rudenko, D. Polotskiy
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引用次数: 0

摘要

研究了低温离子等离子体在聚酯薄膜和聚四氟乙烯柔性耐热聚合物薄膜上制备纳米氮化铝薄膜的技术。对这种纳米结构涂层的结构和光学特性的研究表明,这种纳米结构涂层在红外光谱区具有选择性透射和屏障的功能薄膜是可能的。由于高导热性和特定的光学特性(波长10.3-17.9微米的约束带以及可见光和亚太赫兹光谱区域的良好透明度),在聚合物衬底上的AIN薄多晶薄膜可以用于制作300 K背景下的红外辐射阻挡滤光片,并改善地基望远镜中亚太赫兹低温探测器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanostructured Functional Film Coatings Formed by Helicon-Arc Ion-Plasma Method on the Polymeric Substrates
The technology of low-temperature ion-plasma formation of nanostructured aluminum nitride films on various substrates, including Mylar and Teflon flexible thermolabile polymeric films, was developed. The study of structural and optical characteristics of such nanostructured coatings has shown the possibility to use them as functional films with selective transmissions and barriers in infrared (IR) spectral region. Due to high thermal conductivity and specific optical properties (the Restrahlen band at the wavelengths 10.3-17.9 microns and good transparency in visible and sub-THz spectral regions) AIN thin polycrystalline films on polymeric substrates can be attractive for making IR radiation blocking filters from the background at 300 K and to improve performance of sub-THz low-temperature detectors in ground-based telescopes.
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