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Influences of Temperature on the Conversion of Ammonium Tungstate Pentahydrate to Tungsten Oxide Particles with Controllable Sizes, Crystallinities, and Physical Properties

机译:温度对五水钨酸铵转化为可控制尺寸,结晶度和物理性质的氧化钨颗粒的影响

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摘要

The purpose of this study was to investigate influences of temperature on the conversion of ammonium tungstate pentahydrate (ATP) powder to tungsten trioxide (WO3) particles with controllable sizes, crystallinities, and physicochemical properties. In this study, we used a simple thermal decomposition method. In the experimental procedure, we explored the effect of temperature on the physicochemical properties of ATP by testing various heating temperatures (from 100 to 900 °C). The heated ATP samples were then characterized by a physical observation (i.e. color) and various analysis methods (i.e. a thermal gravimetric and differential thermal analysis, infrared spectroscopy, an X-ray diffraction, and a scanning electron microscope). Experimental results showed that increases in temperature had an impact to the decreases in particle size, the change in material crystallinity, and the change in physical properties (e.g. change of color from white, orange, to yellowish green). The relationships between the reaction temperatures and the physicochemical properties of the ATP were also investigated in detail along with the theoretical consideration and the proposal of the WO3 particle formation mechanism. In simplification, the phenomena can be described into three zones of temperatures. (1) Below 250 °C (release of water molecules and some ammonium ions).; (2) At 250-400 °C (release of water molecules and ammonium ions, restructurization of tungsten and oxygen elements, and formation of amorphous tungsten trioxide). (3) At higher than 400 °C (crystallization of tungsten trioxide). Since ATP possessed reactivity on temperature, its physicochemical properties changing could be observed easily, and the experimental procedure could be done easily. The present study will benefit not only for “chemistry and material science” but also potentially to be used as a model material for explaining the thermal behavior of material to undergraduate students (suitable used for a class and laboratory experiment and demonstration).
机译:这项研究的目的是研究温度对五水合钨酸铵(ATP)粉末向三氧化钨(WO3)颗粒的转化的影响,这些颗粒的尺寸,结晶度和理化性质均可控制。在这项研究中,我们使用了一种简单的热分解方法。在实验过程中,我们通过测试各种加热温度(100至900°C),探索了温度对ATP物理化学性质的影响。然后通过物理观察(即颜色)和各种分析方法(即热重和差热分析,红外光谱,X射线衍射和扫描电子显微镜)表征加热的ATP样品。实验结果表明,温度升高对粒径的减小,材料结晶度的变化以及物理性质的变化(例如,颜色从白色,橙色到黄绿色的变化)都有影响。还对反应温度与ATP的理化性质之间的关系进行了详细研究,并提出了理论考虑和WO3颗粒形成机理的建议。为简化起见,可将现象描述为三个温度区域。 (1)低于250°C(释放水分子和一些铵离子)。 (2)在250-400°C下(水分子和铵离子的释放,钨和氧元素的重组以及无定形三氧化钨的形成)。 (3)高于400°C(三氧化钨结晶)。由于ATP具有一定的温度反应性,因此很容易观察其理化性质的变化,并且容易进行实验。本研究将不仅有益于“化学和材料科学”,而且有可能被用作向本科生解释材料的热行为的模型材料(适用于课堂和实验室实验及演示)。

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