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InSitu FTIR Spectroscopy: Probing the Electrochemical Interface during the Oxygen Reduction Reaction on a Commercial Platinum High-Surface-Area Catalyst

机译:Insitu FTIR光谱:探测商用铂高表面积催化剂的氧还原反应期间的电化学界面

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摘要

Insitu observation of anion adsorption on industrial high-surface-area catalysts is used for the first time under oxygen reduction reaction (ORR) conditions with a defined mass transport. For this purpose, a specially fabricated electrode is used for which the catalyst layer is spray-coated on top of a structured Au contact layer and applied to our recently developed insitu attenuated total reflectance FTIR wall-jet electrode. The designed interface allows us to track anion adsorption and measure the reaction rate simultaneously under mass controlled conditions. The observed absorption bands are caused by anion interaction with the active phase and also the carbon support. If we analyze the absorption band intensity of adsorbed anions as a function of the oxygen reduction reaction rate, the band intensity decreases with the onset of the ORR. This shows that ORR inhibition is a complex interplay between site blocking caused by anion adsorption and oxide formation.
机译:Insitu观察工业高表面催化剂的阴离子吸附在具有限定的大致转运的氧还原反应(ORR)条件下首次使用。 为此目的,使用特殊制造的电极,将催化剂层喷涂在结构化的Au接触层的顶部上,并应用于我们最近开发的Insitu衰减的总反射率FTIR壁射流电极。 设计的界面允许我们在质量控制条件下同时跟踪阴离子吸附并测量反应速率。 观察到的吸收带是由阴离子与活性相的相互作用引起的,也是碳载体引起的。 如果我们用氧还原反应速率的函数分析吸附阴离子的吸收带强度,则带强度随着ORR的开始而降低。 这表明ORR抑制是由阴离子吸附和氧化物形成引起的位点阻断之间的复杂相互作用。

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