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首页> 外文期刊>ACS Omega >Optimized Atmospheric-Pressure Chemical Vapor Deposition Thermochromic VO2 Thin Films for Intelligent Window Applications
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Optimized Atmospheric-Pressure Chemical Vapor Deposition Thermochromic VO2 Thin Films for Intelligent Window Applications

机译:优化的大气压化学气相沉积热致变色VO <亚> 2 薄膜智能窗口应用

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Monoclinic vanadium(IV) oxide (VO_(2)) has been widely studied for energy-efficient glazing applications because of its thermochromic properties, displaying a large change in transmission of near-IR wavelengths between the hot and cold states. The optimization of the reaction between VCl_(4) and ethyl acetate via atmospheric-pressure chemical vapor deposition (APCVD) was shown to produce thin films of monoclinic VO_(2) with excellent thermochromic properties (ΔT _(sol) = 12%). The tailoring of the thermochromic and visible light transmission was shown to be possible by altering the density and morphology of the deposited films. The films were characterized by X-ray diffraction, atomic-force microscopy, scanning electron microscopy, ellipsometry, and UV–vis spectrometry. This article provides useful design rules for the synthesis of high-quality VO_(2) thin films by APCVD.
机译:单斜钒(IV)氧化物(VO_(2))已被广泛研究了节能玻璃应用,因为其热致变色性能,显示了热和冷态之间的近红外波长的变化变化。示出了通过大气压化学气相沉积(APCVD)的VCl_(4)和乙酸乙酯之间的反应优化,以产生具有优异的热致变色特性的单斜晶型VO_(2)的薄膜(Δ t_(sol)= 12%)。通过改变沉积的薄膜的密度和形态,显示了热致变色和可见光传输的剪裁。该薄膜的特征在于X射线衍射,原子力显微镜,扫描电子显微镜,椭圆形和UV-Vis光谱法。本文提供了通过APCVD合成高质量VO_(2)薄膜的有用设计规则。

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