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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Application of Surface-Enhanced Infrared Absorption Spectroscopy to Investigate Pyridine Adsorption on Platinum-Group Electrodes
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Application of Surface-Enhanced Infrared Absorption Spectroscopy to Investigate Pyridine Adsorption on Platinum-Group Electrodes

机译:应用表面增强红外吸收光谱技术研究吡啶在铂族电极上的吸附

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In situ surface-enhanced infrared absorption spectroscopy (SEIRAS) wasapplied to investigate adsorption configurations of pyridine (Py) on platinum, palladium, ruthenium, and rhodium nanoparticle film electrodes. The results reveal that alpha-pyridyl species predominantly form on Pt electrodes by assuming an edge-on configuration with its ring N and alpha-C atoms bonding to the Pt surface, while on Ru and Rh electrodes pyridine molecules essentially remain intact by adopting a slightly edge-tilted configuration through bonding with its N lone pair electrons. Py adsorption on a Pd electrode may lie in between the above two cases; both alpha-pyridyl species and edge-tilted intact pyridine could be significantly present. Further comparison of the typical adsorption configurations on the above four electrodes with those on Ag, Au, Cu, Cd, and Ni film electrodes suggests that valence electrons and the periodic row of metals may play an important role in determining the adsorption configuration.
机译:应用原位表面增强红外吸收光谱法(SEIRAS)研究吡啶(Py)在铂,钯,钌和铑纳米颗粒薄膜电极上的吸附构型。结果表明,α-吡啶基物质主要通过假定其环N和α-C原子键合在Pt表面上的边沿构型形成,而在Ru和Rh电极上,吡啶分子基本上通过保留通过与N个孤对电子结合而形成边缘倾斜的构型。 Pd电极上的Py吸附可能介于上述两种情况之间; α-吡啶基和边缘倾斜的完整吡啶都可能存在。将上述四个电极上的典型吸附构型与Ag,Au,Cu,Cd和Ni薄膜电极上的典型吸附构型进行进一步比较表明,价电子和金属的周期性行可在确定吸附构型中起重要作用。

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