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Formation of nanoscale tungsten oxide structures and colouration characteristics

机译:纳米氧化钨结构的形成和着色特性

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In this work, pH dependent evolution of tungsten oxide (WO3) nanostructures is being reported along with physical characteristics. The synthesis was carried out via an inexpensive solvothermal cum chemical reduction route, with sodium tungstate (Na2WO4) and cetyl trimethyl ammonium bromide (C19H42NBr) as main reactants. The X-ray diffraction, together with transmission electron microscopic studies have revealed formation of regular polyhedral nanocrystalline structures and fractals as one goes from higher pH (= 5·5) to lower pH (= 2) values. The average crystallite size, as calculated through Williamson–Hall plots, was varied within 2·8–6·8 nm for different pH samples. Fourier transform infrared spectroscopy reveals in-plane bending vibration δ (W–OH), observable at ∼1630 cm − 1 and strong stretching ν (W–O–W) located at ∼814 cm − 1. Raman spectroscopy has divulged WO3 Raman active optical phonon modes positioned at ∼717 and 805 cm − 1. The thermochromic and photochromic properties of the nanoscale WO3 sample prepared at pH = 5·5, are also highlighted.
机译:在这项工作中,据报道随着氧化钨(WO 3 )纳米结构的pH依赖性演化及其物理特性。合成是通过廉价的溶剂热暨化学还原方法,用钨酸钠(Na 2 WO 4 )和十六烷基三甲基溴化铵(C 19 H 42 NBr)作为主要反应物。 X射线衍射以及透射电子显微镜研究表明,随着人们从较高的pH(= 5·5)到较低的pH(= 2)值形成规则的多面体纳米晶体结构和分形。通过Williamson-Hall曲线计算得出的平均微晶尺寸,在不同pH样品的2·8-6·8 nm范围内变化。傅立叶变换红外光谱显示出面内弯曲振动δ(W–OH),可在约1630 cm − 1 处观察到,而强拉伸ν(W–O–W)在约814 cm 处观察− 1 。拉曼光谱揭示了WO 3 拉曼有源光学声子模位于717和805 cm − 1 。还强调了在pH = 5·5时制备的纳米级WO 3 样品的热致变色和光致变色特性。

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