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一种用于合成具有优异热致变色性能的 VO2 薄膜的新型溶液处理方法。

A novel solution process for the synthesis of VO2 thin films with excellent thermochromic properties.

机构信息

Research Center for Industrial Ceramics, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Dingxi 1295, Changning, Shanghai 200050, China.

出版信息

ACS Appl Mater Interfaces. 2009 Oct;1(10):2211-8. doi: 10.1021/am900375k.

Abstract

This article describes a novel and simple route to preparing VO(2) thermochromic films by using a VOCl(2) solution with poly(vinylpyrrolidone) (PVP). X-ray diffraction and Raman spectra showed that the VO(2) films deposited with PVP consisted of a nearly pure monoclinic/rutile (M/R) phase. Conversely, films prepared without PVP contained obviously impure crystalline phases. The as-prepared films with PVP showed excellent optical properties compared to those prepared by common gas-phase methods: an integral visible transmittance of 54.5% and an IR reduction (change in transmittance) of 41.5% at 2000 nm. The phase-transition temperatures were adjusted from 69 to 54 degrees C by tungsten doping. Equipment analyses revealed that PVP plays two roles in the film formation. First, it fundamentally acts as a film-forming promoter to improve physical gelation via interactions among oppositely charged carbonyl groups and amine groups of the polymer. Second, the negatively charged carbonyl groups can interact with VO(2+) to form a uniform mixed-gel film after solvent evaporation. Thus, the addition of PVP can stabilize the solution and improve the as-prepared film quality and phase purity. The current study suggests that the process has promise in applications of smart windows.

摘要

本文描述了一种通过使用含有聚维酮(PVP)的 VOCl2 溶液来制备 VO2 热致变色薄膜的新颖而简单的方法。X 射线衍射和拉曼光谱表明,沉积有 PVP 的 VO2 薄膜由近乎纯的单斜相/金红石相(M/R)组成。相反,没有 PVP 制备的薄膜含有明显不纯的结晶相。与通过常见气相方法制备的薄膜相比,具有 PVP 的所制备的薄膜具有优异的光学性能:在 2000nm 处的可见光总透过率为 54.5%,红外减少(透过率变化)为 41.5%。通过掺杂钨可以将相转变温度从 69 度调节到 54 度。设备分析表明,PVP 在薄膜形成中起两个作用。首先,它通过聚合物中带相反电荷的羰基和氨基之间的相互作用,从根本上充当成膜促进剂以改善物理凝胶化。其次,带负电荷的羰基可以与 VO2+相互作用,在溶剂蒸发后形成均匀的混合凝胶膜。因此,添加 PVP 可以稳定溶液并提高所制备的薄膜的质量和相纯度。本研究表明,该工艺在智能窗的应用中有很大的潜力。

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