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Electrochemical Correlation Spectroscopy in Nanofluidic Cavities

机译:纳米流体腔中的电化学相关光谱

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We introduce both theoretically and experimentally a new electrochemical technique based on measuring the fluctuations of the faradaic current during redox cycling. By analogy with fluorescence correlation spectroscopy (FCS), we refer to this technique as electrochemical correlation spectroscopy (ECS). We first derive an analytical expression of the power spectral density for the fluctuations in a thin-layer-cell geometry. We then show agreement with measurements using ferrocenedimethanol, Fc(MeOH)_(2), in water and in acetonitrile in microfabricated thin-layer cells with a approx70 nm electrode spacing. The fluctuation spectra provide detailed information about the adsorption dynamics of Fc(MeOH)_(2), which cause an apparent slowing of Brownian motion. We furthermore observe high-frequency fluctuations from which we estimate the rates of adsorption and desorption.
机译:我们在理论和实验上都引入了一种新的电化学技术,该技术基于测量氧化还原循环中法拉第电流的波动。与荧光相关光谱法(FCS)类似,我们将此技术称为电化学相关光谱法(ECS)。我们首先导出薄层单元几何中波动的功率谱密度的解析表达式。然后,我们在水和乙腈中以约70 nm的电极间距在微细加工的薄层电池中使用二茂铁二甲醇,Fc(MeOH)_(2)进行测量显示出一致性。波动光谱提供了有关Fc(MeOH)_(2)的吸附动力学的详细信息,这会导致布朗运动的明显减慢。我们还观察到高频波动,从中我们可以估计吸附和解吸的速率。

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