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Tunneling Mode of Scanning Electrochemical Microscopy: Probing Electrochemical Processes at Single Nanoparticles

机译:扫描电化学显微镜隧道模式:单纳米粒子探测电化学过程

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Electrochemical experiments at individual nanoparticles (NPs) can provide new insights into their structure-activity relationships. By using small nanoelectrodes as tips in a scanning electrochemical microscope (SECM), we recently imaged individual surface-bound 10-50nm metal NPs. Herein, we introduce a new mode of SECM operation based on tunneling between the tip and a nanoparticle immobilized on the insulating surface. The obtained current vs. distance curves show the transition from the conventional feedback response to electron tunneling between the tip and the NP at separation distances of less than about 3nm. In addition to high-resolution imaging of the NP topography, the tunneling mode enables measurement of the heterogeneous kinetics at a single NP without making an ohmic contact with it. The developed method should be useful for studying the effects of nanoparticle size and geometry on electrocatalytic activity in real-world applications.
机译:单个纳米颗粒(NPS)的电化学实验可以为其结构 - 活性关系提供新的见解。 通过使用小纳米电极作为扫描电化学显微镜(SECM)的尖端,我们最近成像各个表面粘合的10-50nm金属NPS。 在此,我们介绍基于尖端之间的隧道和固定在绝缘表面上的纳米颗粒之间的隧道的新模式。 所获得的电流与距离曲线示出了从传统反馈响应到尖端之间的电子隧道的转变,并且在小于约3nm的分离距离处的尖端和NP之间。 除了NP地形的高分辨率成像之外,隧道模式还能够在单个NP下测量异构动力学,而不会使欧姆接触。 开发方法应该有助于研究纳米颗粒尺寸和几何形状对现实应用中的电催化活性的影响。

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