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Enhanced Visible Transmittance of Thermochromic VO2 Thin Films by SiO2 Passivation Layer and Their Optical Characterization

机译:SiO2钝化层提高热致变色VO2薄膜的可见光透射率及其光学特性

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摘要

This paper presents the preparation of high-quality vanadium dioxide (VO2) thermochromic thin films with enhanced visible transmittance (Tvis) via radio frequency (RF) sputtering and plasma enhanced chemical vapor deposition (PECVD). VO2 thin films with high Tvis and excellent optical switching efficiency (Eos) were successfully prepared by employing SiO2 as a passivation layer. After SiO2 deposition, the roughness of the films was decreased 2-fold and a denser structure was formed. These morphological changes corresponded to the results of optical characterization including the haze, reflectance and absorption spectra. In spite of SiO2 coating, the phase transition temperature (Tc) of the prepared films was not affected. Compared with pristine VO2, the total layer thickness after SiO2 coating was 160 nm, which is an increase of 80 nm. Despite the thickness change, the VO2 thin films showed a higher Tvis value (λ 650 nm, 58%) compared with the pristine samples (λ 650 nm, 43%). This enhancement of Tvis while maintaining high Eos is meaningful for VO2-based smart window applications.
机译:本文介绍了通过射频(RF)溅射和等离子增强化学气相沉积(PECVD)制备具有增强的可见光透射率(Tvis)的高质量二氧化钒(VO2)热致变色薄膜。通过使用SiO2作为钝化层,成功制备了具有高Tvis和出色的光学开关效率(Eos)的VO2薄膜。 SiO 2沉积后,膜的粗糙度降低了2倍,并形成了致密的结构。这些形态变化对应于包括雾度,反射率和吸收光谱在内的光学表征结果。尽管涂覆了SiO 2,但所制备的膜的相变温度(Tc)没有受到影响。与原始VO2相比,SiO2涂层后的总层厚为160 nm,增加了80 nm。尽管厚度有所变化,但与原始样品(λ650 nm,43%)相比,VO2薄膜仍显示出更高的Tvis值(λ650 nm,58%)。 Tvis的这种增强同时保持较高的Eos对基于VO2的智能窗口应用有意义。

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