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Nanostructured VO2 (A) and VO2 (M) Derived from VO2 (B): Facile Preparations and Analyses of Structural, Thermal, Optical and Thermophysical Properties

机译:衍生自VO2(b)的纳米结构VO2(A)和VO2(M):容易制剂和分析结构,热,光学和热物理性质

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Vanadium dioxide (VO2) is an interesting compound that exists in different polymorphic phases with varying characteristics and potential applications. In this study, fabrication and property analyses of three VO2 polymorphs, namely VO2 (B), VO2 (A), and VO2 (M), are described. Specifically, VO2 (B) was prepared via hydrothermal method under a low synthesis temperature of 180 °C and a fast processing time of 24 h. In addition, VO2 (A) and VO2 (M) were derived from the as-synthesized VO2 (B) using sequential hydrothermal treatment and calcination process, respectively. From the fieldemission scanning electron microscope (FESEM) scans, belt-like VO2 (B) nanoparticles with dimensions of as low as 35 × 130 nm2 were formed. Further, hydrothermal treatment of the as-synthesized VO2 (B) resulted to a flower-shaped VO2 (A) due possibly to an oriented attachment mechanism. Meanwhile, annealing of the VO2 (B) sample caused granular growth that produced plate-like and oblate shaped VO2 (M) with dimensions of 135 to 306 nm in diameter and 28 to 37 nm in thickness. Moreover, the thermochromic properties of the samples were examined using differential scanning calorimetry (DSC) while the thermophysical properties of the samples were measured via microflash method. Accordingly, the prepared VO2 (A) and VO2 (M) samples exhibited phase transition behavior at 168.37 °C and 68.6 °C, respectively. Subsequently, changes in the thermophysical properties of each sample can be observed across the measured transition temperature. In particular, an increase in both the thermal diffusivity and thermal conductivity of VO2 (M) can be observed when the temperature was raised from 50 °C to 100 °C. On the other hand, there is a noticeable decrease in the thermal conductivity of VO2 (A) when the temperature was increased from 150 °C to 200 °C.
机译:二氧化钒(VO2)是一种有趣的化合物,其具有不同的多态相,具有不同的特性和潜在应用。在该研究中,描述了三种VO2多晶型物的制造和性质分析,即VO2(B),VO2(A)和VO2(M)。具体地,在180℃的低合成温度下通过水热法制备VO2(B)和24小时的快速加工时间。另外,vo2(a)和Vo2(m)分别使用顺序水热处理和煅烧过程衍生自用于合成的VO2(b)。从现场调用扫描电子显微镜(FESEM)扫描,形成尺寸低至35×130nm2的带状VO2(B)纳米颗粒。此外,由于可能达到定向的附着机制,所以由合成的VO2(B)的水热处理导致花形VO2(A)。同时,VO2(B)样品的退火引起的颗粒生长,其产生的板状和扁平形状的VO2(M)的直径为135至306nm,厚度为28至37nm。此外,使用差示扫描量热法(DSC)检查样品的热致变色特性,同时通过MicroFlash方法测量样品的热理性质。因此,制备的VO2(A)和VO2(M)样品分别在168.37℃和68.6℃下表现出相转变行为。随后,可以在测量的转变温度下观察每个样品的热理性质的变化。特别地,当温度从50℃升至100℃时,可以观察到VO2(M)的热扩散率和导热率的增加。另一方面,当温度从150℃升高至200℃时,VO2(a)的导热率显着降低。

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