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Formation of nanosize ZnO particles by thermal decomposition of zinc acetylacetonate monohydrate

机译:乙酰丙酮锌一水合物的热分解形成纳米ZnO颗粒

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Formation of ZnO particles by thermal decomposition of zinc acetylacetonate monohydrate in air atmosphere has been investigated using XRD, DTA, FT-IR, and FE-SEM as experimental techniques. ZnO as a single phase was produced by direct heating at >200 °C. DTA in air showed an endothermic peak at 195 °C assigned to the ZnO formation and exothermic peaks at 260, 315 and 365 °C, with a shoulder at 395 °C. Exothermic peaks can be assigned to combustion of an acetylacetonate ligand released at 195 °C. ZnO particles prepared at 200 °C have shown no presence of organic species, as found by FT-IR spectroscopy. Particles prepared for 0.5 h at 200 °C were in the nanosize range from approx 20 to approx 40 nm with a maximum at 30 nm approximately. The crystallite size of 30 nm was estimated in the direction of the a_1 and a_2 crystal axes, and in one direction of the c-axis it was 38 nm, as found with XRD. With prolonged heating of ZnO particles at 200 °C the particle/crystallite size changed little. However, with heating temperature increased up to 500 or 600 °C the ZnO particle size increased, as shown by FE-SEM observation. Nanosize ZnO particles were also prepared in two steps: (a) by heating of zinc acetylacetonate monohydrate up to 150 °C and distillation of water and organic phase, and (b) with further heating of so obtained precursor at 300 °C.
机译:使用XRD,DTA,FT-IR和FE-SEM作为实验技术,研究了在空气中通过热分解乙酰丙酮锌一水合物形成ZnO颗粒的方法。 ZnO为单相,是通过在> 200°C的条件下直接加热生产的。空气中的DTA在195°C时出现吸热峰,与ZnO形成有关,在260、315和365°C时出现放热峰,肩部在395°C处。放热峰可归因于在195°C释放的乙酰丙酮酸酯配体的燃烧。 FT-IR光谱法发现,在200°C下制备的ZnO颗粒不存在有机物质。在200°C下制备0.5 h的颗粒的纳米尺寸范围约为20至40 nm,最大值约为30 nm。如通过XRD所​​发现的,在a_1和a_2晶轴的方向上估计为30nm的微晶尺寸,并且在c轴的一个方向上为38nm。随着ZnO颗粒在200°C下长时间加热,颗粒/微晶尺寸几乎没有变化。但是,随着加热温度升高到500或600°C,ZnO粒度会增加,如FE-SEM观察所示。还分两个步骤制备纳米级的ZnO颗粒:(a)通过将乙酰丙酮锌一水合物加热至150℃并蒸馏水和有机相,和(b)进一步将如此获得的前体在300℃加热。

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