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Oxidative adsorption and hydrogen-mediated desorption of parabanic acid on Pt(111) electrodes

机译:Pt(111)电极上对羟基苯甲酸的氧化吸附和氢介导的解吸

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摘要

The adsorption properties of parabanic acid (PBA) on Pt(111) electrodes are described. The process taken place with charge transfer at potentials higher than 0.175 V. The PBA adlayer is particularly stable against oxidation or CO adsorption but is desorbed upon hydrogen adsorption. Comparison between voltammetric charges and charge displacement experiments, carried out at low potentials, enables the estimation of the PBA contribution to the overall voltammetric charge. Spectroelectroelectrochemical experiments suggest that PBA adsorption takes place through one of its nitrogen atoms, after breaking of the corresponding N-H bond. The kinetics of the PBA adlayer desorption takes place through an instantaneous nucleation and growth mechanism, linked to the adsorption of hydrogen atoms.
机译:描述了Pt(111)电极上的对羟基苯甲酸(PBA)的吸附性能。该过程是在高于0.175 V的电势下进行电荷转移的。PBA吸附层对氧化或CO吸附特别稳定,但在氢吸附时会解吸。在低电势下进行伏安电荷和电荷置换实验之间的比较,可以估算PBA对总伏安电荷的贡献。光谱电化学实验表明,在破坏相应的N-H键后,PBA的吸附是通过其氮原子之一进行的。 PBA吸附层解吸的动力学是通过瞬时成核和生长机理发生的,与氢原子的吸附有关。

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