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An on-chip electrical transport spectroscopy approach for in situ monitoring electrochemical interfaces

机译:用于现场监测电化学界面的片上电传输光谱方法

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摘要

In situ monitoring electrochemical interfaces is crucial for fundamental understanding and continued optimization of electrocatalysts. Conventional spectroscopic techniques are generally difficult to implement for in situ electrochemical studies. Here we report an on-chip electrical transport spectroscopy approach for directly probing the electrochemical surfaces of metallic nanocatalysts in action. With a four-electrode device configuration, we demonstrate that the electrical properties of ultrafine platinum nanowires are highly sensitive and selective to the electrochemical surface states, enabling a nanoelectronic signalling pathway that reveals electrochemical interface information during in-device cyclic voltammetry. Our results not only show a high degree of consistency with generally accepted conclusions in platinum electrochemistry but also offer important insights on various practically important electrochemical reactions. This study defines a nanoelectronic strategy for in situ electrochemical surface studies with high surface sensitivity and surface specificity.
机译:现场监测电化学界面对于基本了解和持续优化电催化剂至关重要。对于原位电化学研究而言,常规的光谱技术通常难以实施。在这里,我们报告了一种芯片上的电传输光谱方法,用于直接探测作用中的金属纳米催化剂的电化学表面。通过四电极设备配置,我们证明了超细铂纳米线的电学特性对电化学表面态高度敏感且具有选择性,从而实现了在器件内循环伏安法中揭示电化学界面信息的纳米电子信号通路。我们的结果不仅显示出与铂电化学中公认的结论高度一致,而且还提供了对各种实际重要的电化学反应的重要见解。这项研究定义了具有高表面敏感性和表面特异性的原位电化学表面研究的纳米电子策略。

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