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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effects of Nanowire Length on Charge Transport in Vertically Aligned Gold Nanowire Array Electrodes
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Effects of Nanowire Length on Charge Transport in Vertically Aligned Gold Nanowire Array Electrodes

机译:纳米线长度对垂直对准金纳米线阵列电极电荷输送的影响

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摘要

In this study, we demonstrate that vertically aligned gold nanowire array electrodes provide rapid ion and electron transport to the electrode-electrolyte interface. The charge-transport properties of the nanowire electrodes were investigated through cyclic voltammetry, galvanostatic charge/ discharge measurements, and electrochemical impedance spectroscopy under a constant-volume device configuration. The total charge stored in the corresponding devices increases monotonically with the length of the nanowires owing to the concomitant increase in the electroactive real surface area of the electrode. A remarkable feature of the electrodes is that the internal resistance associated with charge transport decreases with increasing nanowire length. The electric double-layer capacitance per unit electroactive surface area remains constant up to high charge/discharge rates. Our results demonstrate that charge migration occurs rapidly on the surfaces of the nanowires regardless of their length and the charge/discharge rate used. Thus, vertically aligned nanowire array electrodes show promise as current collectors for next-generation electrochemical energy-storage devices.
机译:在该研究中,我们证明垂直对准的金纳米线阵列电极为电极 - 电解质界面提供快速离子和电子传输。通过循环伏安法,电镀电荷/放电测量和电化学阻抗光谱在恒定容积装置配置下研究纳米线电极的电荷运输性能。存储在相应的装置中的总电荷随着电极的电活性真面积的伴随增加而单调地随着纳米线的长度而增加。电极的显着特征是与电荷传输相关的内部电阻随着纳米线长度的增加而降低。每单位电活性表面积的电双层电容保持恒定到高充电/放电速率。我们的结果表明,无论其长度和所用充电/放电速率如何,纳米线的表面都会快速发生电荷迁移。因此,垂直对准的纳米线阵列电极显示为下一代电化学能量存储装置的集电器。

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