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首页> 外文期刊>ACS catalysis >In Situ Mechanistic Investigation of O-2 Reduction by Iron Porphyrin Electrocatalysts Using Surface-Enhanced Resonance Raman Spectroscopy Coupled to Rotating Disk Electrode (SERRS-RDE) Setup
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In Situ Mechanistic Investigation of O-2 Reduction by Iron Porphyrin Electrocatalysts Using Surface-Enhanced Resonance Raman Spectroscopy Coupled to Rotating Disk Electrode (SERRS-RDE) Setup

机译:使用表面增强共振拉曼光谱和旋转盘电极(SERRS-RDE)建立的卟啉铁催化剂对O-2还原的原位机理研究

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摘要

Over the past few decades, researchers have used heme/porphyrin-based electrocatalysts that are known to catalyze various electrochemical transformations such as O-2 reduction, water splitting, CO2 reduction, etc. Detailed understanding of the mechanism of the catalysts is essential for their development. However, it is limited because of the lack of direct spectroscopic evidence of the intermediates formed on the electrodes during catalytic turnover. Recently, surface-enhanced resonance Raman spectroscopy coupled to rotating disk electrochemistry (SERRS-RDE) has been developed in our laboratory that can be used to study O-2 reduction by iron porphyrin electrocatalysts under physiological conditions. While reaction intermediates are commonly trapped and characterized in single turnover experiments, SERRS-RDE experiments, on the other hand, probe the system while it is under steady-state conditions. A combination of oxidation state, coordination number, and spin state marker bands, along with the metal ligand vibrations, allowed unprecedented direct identification of O-2-derived intermediates formed in situ on the electrode surface during electrocatalysis. This approach, which combines dynamic electrochemistry with resonance Raman spectroscopy, has now been used to understand the role of different axial ligands and distal superstructures in the mechanism of electrochemical O-2 reduction.
机译:在过去的几十年中,研究人员使用了基于血红素/卟啉的电催化剂,这些催化剂可催化各种电化学转化,例如O-2还原,水分解,CO2还原等。对催化剂机理的详细理解对其至关重要。发展。但是,它的局限性在于缺乏在催化转换过程中在电极上形成的中间体的直接光谱证据。最近,在我们的实验室中开发了与旋转盘电化学(SERRS-RDE)耦合的表面增强共振拉曼光谱,可用于研究生理条件下铁卟啉电催化剂对O-2的还原作用。虽然通常在一次转换实验中捕获和表征反应中间体,但另一方面,SERRS-RDE实验却在稳态条件下探测系统。氧化态,配位数和自旋态标记带的结合,以及金属配体的振动,可以前所未有地直接识别在电催化过程中原位形成在电极表面的O-2衍生中间体。该方法将动态电化学与共振拉曼光谱相结合,现已用于了解不同轴向配体和远侧超结构在电化学O-2还原机理中的作用。

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