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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Hydrothermal Synthesis of Monoclinic VO2 Micro- and Nanocrystals in One Step and Their Use in Fabricating Inverse Opals
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Hydrothermal Synthesis of Monoclinic VO2 Micro- and Nanocrystals in One Step and Their Use in Fabricating Inverse Opals

机译:水热一步法合成单斜晶VO2微晶和纳米晶及其在制备反蛋白石中的应用

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摘要

Monoclinic vanadium dioxide VO2(M) shows a reversible first-order metal—insulator transition (MIT) to metallic rutile phase VO2(R) at a temperature of T_c = ~68 °C. Synthesis pf micro- and nanocrystals of VO2(M) by a direct one-step hydrothermal method is reported herein. The reaction employs a combination of a hydrolyzed precipitate of VO~(2+) with hydrazine and NaOH. The morphology and composition of the product depends on the conditions used for preparing the precursor, including pH, temperature, and NaOH concentration. Asterisk or rod shaped VO2(M) microcrystals or hexagon shaped nanocrystals were obtained depending on the reaction conditions, admixed with VO2(B) nanowires. Higher temperature, pH or NaOH concentration during the precursor formation favored VO2(M) and VO2(B) nanocrystals. The VO2(M) microcrystals showed the expected metal—insulator transition at around 67 °C which was monitored by optical microscopy. As a demonstration of their potential use, we used the VO2 nanocrystals to infiltrate opaline lattices of polystyrene beads to generate inverse opals.
机译:单斜晶二氧化钒VO2(M)在T_c =〜68°C的温度下向金属金红石相VO2(R)具有可逆的一阶金属-绝缘体转变(MIT)。本文报道了通过直接一步水热法合成VO2(M)的微晶体和纳米晶体。该反应采用VO〜(2+)的水解沉淀物与肼和NaOH的组合。产物的形态和组成取决于用于制备前体的条件,包括pH,温度和NaOH浓度。根据反应条件获得星号或棒状的VO2(M)微晶或六边形的纳米晶,并与VO2(B)纳米线混合。前体形成过程中较高的温度,pH或NaOH浓度有利于VO2(M)和VO2(B)纳米晶体。 VO2(M)微晶在67°C左右显示出预期的金属-绝缘体转变,可通过光学显微镜进行监测。为了说明其潜在用途,我们使用了VO2纳米晶体来渗透聚苯乙烯珠的不透明晶格,以生成反蛋白石。

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