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Scalable Production of Thermochromic Nb-Doped VO2 Nanomaterials Using Continuous Hydrothermal Flow Synthesis

机译:连续水热流合成法可扩展生产热致变色Nb掺杂VO2纳米材料

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摘要

The synthesis of effective thermochromic Nb-doped VO2 nanoparticles, containing a range of Nb dopant concentrations (1, 5 and 15 at.% Nb), was carried out via continuous hydrothermal flow process under supercritical water regime. The synthesis method employed here is directly scalable for industrial purposes and the materials may be produced at a rate of kg h(-1) in our pilot plant. The thermochromic properties of these materials were studied at variable temperature using UV/Vis spectroscopy. The structure, morphology and particle properties were characterised using powder X-ray diffraction, Raman spectroscopy and transmission electron microscopy. The incorporation of Nb dopant into VO2 was studied X-ray photoelectron spectroscopy. The Nb-doped VO2 materials showed a substantial decrease in metal-to-semiconductor transition temperature (ca. 20 degrees C) and improved optical features (narrow hysteresis loop, 10 degrees C difference) compared to undoped VO2 nanoparticles synthesised under similar conditions. A reduction in the MST temperature of 3.6 degrees C per at.% Nb incorporated was estimated from these studies.
机译:通过连续的水热流动过程,在超临界水条件下进行了有效的热致变色Nb掺杂的VO2纳米颗粒的合成,其中包含一定范围的Nb掺杂剂浓度(1、5%和15 at。%Nb)。此处采用的合成方法可直接用于工业用途,并且在我们的中试工厂中,材料的生产速率为kg h(-1)。使用紫外/可见光谱在可变温度下研究了这些材料的热致变色性质。使用粉末X射线衍射,拉曼光谱和透射电子显微镜表征了结构,形态和颗粒性质。用X射线光电子能谱研究了Nb掺杂剂向VO2的掺入。与在相似条件下合成的未掺杂的VO2纳米粒子相比,掺Nb的VO2物质显示出金属至半导体的转变温度(约20摄氏度)大大降低,并且光学特性得到改善(窄磁滞回线,相差10摄氏度)。从这些研究中估计,每掺入Nb的MST温度降低3.6摄氏度。

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