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首页> 外文期刊>Angewandte Chemie >Boosting Hydrogen Production by Anodic Oxidation of Primary Amines over a NiSe Nanorod Electrode
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Boosting Hydrogen Production by Anodic Oxidation of Primary Amines over a NiSe Nanorod Electrode

机译:通过NISE纳米棒电极通过阳极氧化氧化氧化氢产生

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摘要

For electrocatalytic water splitting, the sluggish anodic oxygen evolution reaction (OER) restricts the cathodic hydrogen evolution reaction (HER). Therefore, developing an alternative anodic reaction with accelerating kinetics to produce value-added chemicals, especially coupled with HER, is of great importance. Now, a thermodynamically more favorable primary amine (-CH2-NH2) electrooxidation catalyzed by NiSe nanorod arrays in water is reported to replace OER for enhancing HER. The increased H-2 production can be obtained at cathode; meanwhile, a variety of aromatic and aliphatic primary amines are selectively electrooxidized to nitriles with good yields at the anode. Mechanistic investigations suggest that Ni-II/Ni-III may serve as the redox active species for the primary amines transformation. Hydrophobic nitrile products can readily escape from aqueous electrolyte/electrode interface, avoiding the deactivation of the catalyst and thus contributing to continuous gram-scale synthesis.
机译:对于电催化水分裂,缓慢的阳极氧气进化反应(oer)限制了阴极氢进化反应(她)。因此,开发与加速动力学的替代阳极反应,以产生增值化学品,特别是与她联系,具有重要意义。现在,据报道,在水中催化的热力学更有利的初级胺(-CH2-NH2)电氧化,以替代oer以增强她。可以在阴极获得增加的H-2生产;同时,各种芳族和脂族原发性胺被选择性地电氧化成具有良好产率的腈处的腈。机械研究表明,Ni-II / Ni-III可以作为初级胺转化的氧化还原活性物质。疏水性腈产品可以容易地从电解质/电极界面中逸出,避免催化剂的失活,从而有助于连续革兰级合成。

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