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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electrochemical deposition of metals inside high aspect ratio nanoelectrode array: Analytical current expression and multidimensional kinetic model for cobalt nanostructure synthesis
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Electrochemical deposition of metals inside high aspect ratio nanoelectrode array: Analytical current expression and multidimensional kinetic model for cobalt nanostructure synthesis

机译:高纵横比纳米电极阵列内金属的电化学沉积:钴纳米结构合成的解析电流表达式和多维动力学模型

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摘要

We report for the first time a comprehensive kinetic model based on the coupling of a cylindrical ultra-recessed electrode (Szabo, A.; Cope, D. K.; Tallman, D. E.; Kovach, P. M.; Wightman, R. M. J. Electroanal. Chem. 1987, 217, 417.) and the fractional area: this takes into account the derivation of a global diffusion coefficient in the steady-state current regime and considers the geometry of the nanoelectrode influence on the process. An experimental validation is done with the electrochemical deposition of cobalt inside a track-etched polymer membrane. This shows the kinetic dependence over the concentration, overvoltage, and geometrical parameters of the system. A decoupling of those parameters on the diffusion term is done, and a semianalytical model was derived for the case of cobalt. An estimation of the transference number and heterogeneous rate constant of the process is experimentally derived. This model provides the possibility of the prediction of electrosynthesis conditions with a quantitative evaluation of determining factors for the resulting nanostructure.
机译:我们首次报告了基于圆柱形超凹电极的耦合的综合动力学模型(Szabo,A .; Cope,DK; Tallman,DE; Kovach,PM; Wightman,RMJ Electroanal.Chem.1987,217, 417.)和小数区域:这考虑了稳态电流范围内的整体扩散系数的推导,并考虑了纳米电极的几何形状对过程的影响。实验验证是通过在径迹刻蚀的聚合物膜内进行钴的电化学沉积来完成的。这显示了系统对浓度,过电压和几何参数的动力学依赖性。完成了这些参数在扩散项上的解耦,并针对钴的情况导出了半分析模型。通过实验推导了该过程的转移数和异质速率常数的估计。该模型通过定量评估所得纳米结构的决定因素,提供了预测电合成条件的可能性。

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