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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electrocatalysis of peroxide reduction by Au-stabilized, Fe-containing poly(vinylpyridine) films
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Electrocatalysis of peroxide reduction by Au-stabilized, Fe-containing poly(vinylpyridine) films

机译:Au稳定的含Fe的聚乙烯基吡啶薄膜对过氧化物的电催化还原

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摘要

We show that poly(vinylpyridine) (PVP) coated glassy carbon surfaces containing Fe(CN)(6)(3-) exhibit catalytic activity toward electroreduction of H2O2. While Fe(CN)(6)(3-) is catalytically inactive in solution phase, it exhibits catalytic activity upon incorporation into the PVP film, because film incorporation leads to an open coordination site in the otherwise inert Fe(CN)(6)(3-) molecule. However, this catalytic activity is quickly lost during H2O2 electroreduction due to leaching of the Fe species from the PVP film. The Fe catalyst in the PVP film could be stabilized by 1 order of magnitude in time by electrodeposition of small Au particles. Characterization of the film using scanning electron microscopy, secondary ion mass spectroscopy, and Raman spectroscopy shows that covalent attachment between the Au particle and the Fe-based catalyst is a likely mechanism for catalyst stabilization.
机译:我们表明,含有Fe(CN)(6)(3-)的聚(乙烯基吡啶)(PVP)涂层玻璃碳表面表现出对H2O2电还原的催化活性。尽管Fe(CN)(6)(3-)在溶液相中没有催化活性,但在掺入PVP膜时会表现出催化活性,因为膜的掺入会导致在原本呈惰性的Fe(CN)(6)中形成开放的配位点(3-)分子。但是,由于从PVP膜中浸出了Fe,因此在H2O2电还原过程中,这种催化活性很快丧失。通过小金颗粒的电沉积,可以将PVP膜中的Fe催化剂在时间上稳定1个数量级。使用扫描电子显微镜,二次离子质谱和拉曼光谱对薄膜进行表征表明,Au颗粒与铁基催化剂之间的共价结合是催化剂稳定的可能机制。

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