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Nanoscale Co3O4 powders prepared by an enhanced solid-state reaction method

机译:纳米级CO3O4粉末通过增强的固态反应方法制备

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摘要

This work is focused on the mechanism study of nanoscale Co3O4 powders prepared by an enhanced solid-state reaction method. The as-prepared powders are characterized by thermogravimetric-differential scanning calorimetry (TG-DSC), X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) with the powders ball milled for different times as the control. The results show that ball milling can accelerate the thermal decomposition process by approximately 18.2%. Moreover, the apparent thermal decomposition activation energy of CoCO3 powders pretreated by the enhanced solid-state method declined by 33.2%. To elucidate this,the thermal decomposition kinetic equations of CoCO3 powders, with and without ball milling, are calculated. And the thermal decomposition kinetic equation of the ball-milled powders is da/dt = (2.42E6 similar to 2.19E7) exp [(8.74E3 similar to 9.96E3)/T] 4/3(1-alpha) [-ln(1-alpha)](1/4); while that of the powders lack of ball milling is da/dt = (1.08E10 similar to 1.07E11) exp [(1.43E4 similar to 1.51E4)/T] 2/3a(-1/2), respectively. The reaction process at different time points can be forecasted by the obtained equations.
机译:该作品专注于通过增强的固态反应方法制备的纳米级CO3O4粉末的机制研究。用热量分析扫描量热法(TG-DSC),X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)与粉末球铣削不同的粉末的特征在于控制。结果表明,球磨可以将热分解过程加速约18.2%。此外,通过增强的固态方法预处理的CoCO3粉末的表观热分解活化能量下降33.2%。为了阐明这一点,计算Coco3粉末的热分解动力学方程,具有和不具有球磨。滚珠研磨粉末的热分解动力学方程是DA / DT =(2.42E6,类似于2.19E7)EXP [(8.74E3类似于9.96E3)/ T] 4/3(1-α)[-LN( 1-alpha)](1/4);虽然粉末的缺乏球磨是DA / DT =(1.08E10类似于1.07E11)EXP [(1.43E4类似于1.51E4)/ T] 2 / 3A(-1/2)。可以通过所获得的方程式预测不同时间点的反应过程。

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