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Kinetic study on the copper electroless coating on carbon nanotubes

机译:碳纳米管上铜化学涂层的动力学研究

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The present work deals with the kinetics of Cu coating on carbon nanotube by electroless deposition method performed at five temperatures of 10, 25, 50, 75 and 90 degrees C. A theoretical model for nucleation and growth transformation based on Johnson-Mehl-Avrami equation was applied for determining the kinetics and mechanism of the process. The evolution of the Cu precipitation was assessed by the variation of Cu2+ ion concentrations in the electroless bath solution. The average Avrami exponent was acquired 1.35 which is in agreement with the grain boundary nucleation after saturation with interface controlled growth mode. It was found that raising the temperature of the solution could accelerate the reaction rate. The value of 49.9 kJ mol(-1) obtained for the activation energy is of the same order as found in similar surface chemical-controlled processes. The X-ray diffraction result revealed that the crystalline structure of Cu was obtained on CNTs from the electroless process. Field emission scanning electron microscopy results were in agreement with the trends of nucleation and growth mechanism and showed that the CNTs were uniformly covered with Cu after the process. Fourier transform infrared spectroscopy test demonstrated that the functional groups formed by functionalizafion treatment on the surface of CNTs might act as suitable nucleation sites.
机译:本工作涉及通过在10,25,50,75和90摄氏度的五个温度下进行的化学沉积方法对碳纳米管上的Cu涂层动力学。基于Johnson-Mehl-Avrami方程的​​核切割和生长转化的理论模型应用用于确定该过程的动力学和机制。通过化学镀盐溶液中的Cu2 +离子浓度的变化来评估Cu沉淀的演变。获得了1.35年的平均AVRAMI指数,其与饱和界面控制的生长模式饱和后的晶界核心一致。发现提高溶液的温度可以加速反应速率。对于激活能量获得的49.9 kJ摩尔(-1)的值与相似的表面化学控制过程中发现的顺序相同。 X射线衍射结果显示,在无电气过程中获得Cu的晶体结构。场发射扫描电子显微镜结果与成核和生长机制的趋势一致,并显示CNT在该过程之后均匀地覆盖Cu。傅里叶变换红外光谱检测证明,通过CNT表面上的功能升处理形成的官能团可以充当合适的成核位点。

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