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Palladized silver as new cathode material: Evidence of a one-electron scission for primary alkyl iodides

机译:镀钯银作为新型阴极材料:伯烷基碘化物单电子断裂的证据

摘要

Silver electrodes modified by ‘‘palladization” thanks to an immersion in acidic solutions of Pd2+ salts, exhibit exceptional catalytic capabilities especially in the cleavage of primary alkyl halides used as standardudsystems in order to evaluate the catalytic activity. Such chemically modified surfaces characterized by the formation of an Ag/Pd-based alloy showed large potential shifts compared to the use of glassy carbon or even smooth silver cathodes. Specifically, these palladium-doped silver surfaces were successfully used for cleaving carbon–iodine bonds. Thus, preliminary results have revealed that palladized silver electrodes behave quite differently from smooth silver and showed exceptional catalytic capabilities.udCathodic reductions were achieved in dimethylformamide, acetonitrile, and propylene carbonate. While smooth silver cathodes generally entailed two-electron cleavage reactions (evidence of two clearly separated steps in propylene carbonate), palladized silver interfaces always yield catalytic cleavages of carbon–iodine bonds according to single one-electron processes with the transient formation of a free alkyl radical leading to homo-coupling processes.
机译:由于浸入Pd2 +盐的酸性溶液中,经“钯化”修饰的银电极表现出优异的催化能力,尤其是在裂解用作标准 udsystems的伯烷基卤以评估催化活性方面。与使用玻璃碳或什至光滑的银阴极相比,以形成基于Ag / Pd的合金为特征的此类化学改性表面表现出大的电位漂移。特别是,这些掺杂钯的银表面已成功用于裂解碳碘键。因此,初步结果表明,以钯为原料的银电极的性能与光滑的银极不相同,并且显示出优异的催化能力。ud在二甲基甲酰胺,乙腈和碳酸亚丙酯中实现了阴极还原。尽管光滑的银阴极通常需要进行两个电子裂解反应(在碳酸亚丙酯中有两个明显分开的步骤的证据),但以钯制化的银界面始终会根据单个单电子过程产生碳-碘键的催化裂解,并瞬间形成游离烷基从根本上导致同质耦合过程。

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