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Electrooxidation of Ethanol on Pt and PtRu Surfaces Investigated by ATR Surface-Enhanced Infrared Absorption Spectroscopy

机译:ATR表面增强红外吸收光谱法研究乙醇在Pt和PtRu表面上的电氧化

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摘要

Herein, it was investigated for the first time the electro-oxidation of ethanol on Pt and PtRu electrodeposits in acidic media by using in situ surface enhanced infrared absorption spectroscopy with attenuated total reflection (ATR-SEIRAS). The experimental setup circumvents the weak absorbance signals related to adsorbed species, usually observed for rough, electrodeposited surfaces, and allows a full description of the CO coverage with the potential for both catalysts. The dynamics of adsorption-oxidation of CO was accessed by ATR-SEIRAS experiments (involving four ethanol concentrations) and correlated with expressions derived from a simple kinetic model. Kinetic analysis suggests that the growing of the CO adsorbed layer is nor influenced by the presence of Ru neither by the concentration of ethanol. The results suggest that the C-C scission is not related to the presence of Ru and probably happens at Pt sites.
机译:本文中,首次使用具有衰减全反射的原位表面增强红外吸收光谱法(ATR-SEIRAS),首次研究了乙醇在酸性介质中Pt和PtRu电沉积物上的电氧化。实验装置避免了通常在粗糙,电沉积的表面上观察到的与吸附物质有关的弱吸收信号,并且可以用两种催化剂的潜力全面描述CO的覆盖率。通过ATR-SEIRAS实验(涉及四个乙醇浓度)访问了CO吸附氧化的动力学,并与从简单动力学模型得出的表达式相关。动力学分析表明,Ru的存在也不受乙醇浓度的影响,CO吸附层的生长也不受影响。结果表明,CC断裂与Ru的存在无关,可能发生在Pt部位。

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