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Carbon Nanofiber Electrodes and Controlled Nanogaps for Scanning Electrochemical Microscopy Experiments

机译:碳纳米纤维电极和可控的纳米间隙,用于扫描电化学显微镜实验

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The electrochemical behavior of electrodes made by sealing carbon nanofibers in glass or with electrophoretic paint has been studied by scanning electrochemical microscopy (SECM). Because of their small electroactive surface area, conical geometry with a low aspect ratio and high overpotential for proton and oxygen reduction, carbon nanofiber (CNF) electrodes are promising candidates for producing electrode nanogaps, imaging with high spatial resolution and for the electrodeposition of single metal nanoparticles (e.g., Pt, Pd) for studies as electrocatalysts. By using the feedback mode of the SECM, a CNF tip can produce a gap that is smaller than 20 nm from a platinum disk. Similarly, the SECM used in a tip-collection substrate-generation mode, which subsequently shows a feedback interaction at short distances, makes it possible to detect a single CNF by another CNF and then to form a nanometer gap between the two electrodes. This approach was used to image vertically aligned CNF arrays. This method is useful in the detection in a homogeneous solution of short-lifetime intermediates, which can be electrochemically generated at one electrode and collected at the second at distances that are equivalent to a nanosecond time scale.
机译:通过扫描电化学显微镜(SECM)研究了通过将碳纳米纤维密封在玻璃或电泳漆中制成的电极的电化学行为。由于碳纳米纤维(CNF)电极的电活性表面积小,纵横比低,质子和氧还原的超电势高的圆锥形几何形状,因此有望成为产生电极纳米间隙,高空间分辨率成像和单金属电沉积的候选材料纳米颗粒(例如Pt,Pd)作为电催化剂的研究。通过使用SECM的反馈模式,CNF针尖可以与铂圆盘产生小于20 nm的间隙。类似地,在尖端收集衬底生成模式下使用的SECM随后显示出短距离的反馈相互作用,从而可以通过另一个CNF检测单个CNF,然后在两个电极之间形成纳米间隙。该方法用于对垂直对齐的CNF阵列成像。该方法可用于在短寿命中间体的均匀溶液中进行检测,该中间体可以在一个电极上电化学生成,并在第二个电极上以相当于纳秒级的距离收集。

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