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Electrochemical Characterization of Recessed Nanodisk-Array Electrodes Prepared from Track-Etched Membranes

机译:由刻痕膜制备的嵌入式纳米盘阵列电极的电化学表征

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Recessed nanodisk-array electrodes (RNEs) fabricated from track-etched polycarbonate membranes (TEPCMs) having cylindrical nanopores (50 nm in diameter) were characterized using cyclic voltammetry (CV). Such electrodes were prepared by depositing a gold thin film onto a TEPCM via sputtering or thermal evaporation. CV of the RNEs showed the transition from linear to radial diffusion modes of redox-active molecules with decreasing scan rate. The resulting change in maximum faradic current, which is the peak current in a peak-shaped CV and the plateau current in a sigmoidal CV, provides a simple means for calculating the pore length and effective pore density within a RNE. This method permits us to assess the completeness of the seal between a TEPCM and gold film as well as the extent to which air bubbles block the nanopores.
机译:使用循环伏安法(CV)对由具有圆柱形纳米孔(直径为50 nm)的径刻聚碳酸酯膜(TEPCM)制成的嵌入式纳米盘阵列电极(RNE)进行表征。通过经由溅射或热蒸发将金薄膜沉积到TEPCM上来制备这样的电极。 RNE的CV显示,随着扫描速率的降低,氧化还原活性分子从线性扩散模式过渡到径向扩散模式。由此产生的最大法拉第电流变化(即峰形CV中的峰值电流和S形CV中的平稳电流)为计算RNE中的孔长度和有效孔密度提供了一种简单的方法。这种方法使我们能够评估TEPCM和金膜之间的密封完整性,以及气泡阻塞纳米孔的程度。

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