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Time-resolved determination of the potential of zero charge at polycrystalline Au/ionic liquid interfaces

机译:多晶体Au /离子液体界面处的零电荷电位的时间分辨确定

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摘要

The potential of zero charge (PZC) is a fundamental property that describes the electrode/electrolyte interface. The determination of the PZC at electrode/ionic liquid interfaces has been challenging due to the lack of models that fully describe these complex interfaces as well as the non-standardized approaches used to characterize them. In this work, we present a method that combines electrode immersion transient and impedance measurements for the determination of the PZC. This combined approach allows the distinction of the potential of zero free charge (pzfc), related to fast double layer charging on a millisecond timescale, from a potential of zero charge on a timescale of tens of seconds related to slower ion transport processes at the interface. Our method highlights the complementarity of these electrochemical techniques and the importance of selecting the correct timescale to execute experiments and interpret the results. Published by AIP Publishing.
机译:零电荷(PZC)的电位是描述电极/电解质界面的基本属性。 由于缺乏完全描述这些复杂界面的模型以及用于表征它们的非标准化方法,因此在电极/离子液体界面处的测定是挑战的。 在这项工作中,我们提出了一种方法,该方法将电极浸没瞬态和阻抗测量结果结合以确定PZC的确定。 这种组合方法允许区分零自由电荷(PZFC)的电位,与毫秒计时器上的快速双层充电相关,从零秒钟的零电荷上的零电荷电位与界面上的较慢离子传输过程相关的时间尺寸。 。 我们的方法突出了这些电化学技术的互补性,以及选择正确时间尺度来执行实验并解释结果的重要性。 通过AIP发布发布。

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