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Quantifying electrochemical nucleation and growth of nanoscale clusters using real-time kinetic data

机译:使用实时动力学数据量化纳米级簇的电化学成核和生长

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摘要

Electrochemical techniques are used widely for the fabrication of nanostructured materials, yet a quantitative understanding of nucleation and growth remains elusive. Here we probe electrochemical nucleation and growth of individual nanoclusters in real time by combining current-time measurements with simultaneous video imaging. We show discrepancies between the growth kinetics measured for individual nanoclusters and the predictions of models, and we describe a significant revision to conventional models that can explain the results. This improved understanding of nucleation and growth allows a more quantitative approach to the electrochemical fabrication of nanoscale structures.
机译:电化学技术被广泛用于纳米结构材料的制造,但是对成核和生长的定量了解仍然难以捉摸。在这里,我们通过将当前时间的测量结果与同步视频成像相结合,实时探测单个纳米簇的电化学成核和生长。我们显示了测量的单个纳米团簇的生长动力学与模型预测之间的差异,并且我们描述了可以解释结果的常规模型的重大修订。对成核和生长的这种更好的理解允许对纳米级结构的电化学制造采用更定量的方法。

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