首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Selective reduction of nitrobenzene to aniline over electrocatalysts based on nitrogen-doped carbons containing non-noble metals
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Selective reduction of nitrobenzene to aniline over electrocatalysts based on nitrogen-doped carbons containing non-noble metals

机译:基于含氮金属的氮掺杂碳,在电催化剂上选择性降低硝基苯苯胺

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摘要

Non-noble metals (Fe, Co or Cu) supported on N-doped carbons were investigated for the first time as electro-catalysts for the reduction of nitrobenzene to aniline in a half-cell setup. The electrocatalysts were prepared by pyrolysis of composites of activated carbon (AC) and polyaniline (PANI) with incorporated metal sites. The electrocatalyst performance was strongly influenced by the nature of the metal and by the synthesis method. For the latter, a different optimum was identified for each metal. The Cu-based electrocatalyst synthesised with a low amount of PANI and Cu relative to AC, was identified as the best electrocatalyst based on its onset potential, kinetic current density and selectivity to aniline. Most importantly, unprecedented selectivity to aniline was obtained (82%, as determined by chronoamperometry) with this electrocatalyst in a half-cell setup. This makes it a promising candidate for the electrochemical cogeneration of the industrially valuable aniline and electricity in a proton-exchange membrane fuel cell.
机译:首次研究了N-掺杂碳的非贵金属(Fe,Co或Cu)作为电催化剂,以将硝基苯还原为半电池设置中的苯胺。通过掺入的金属位点通过活性炭(AC)和聚苯胺(PANI)的复合材料热解来制备电催化剂。电催化剂性能受金属性质的强烈影响,并通过合成方法影响。对于后者,针对每种金属鉴定出不同的最佳。基于含量的Cu基电催化剂相对于Ac合成,基于其发病潜力,动力电流密度和对苯胺的选择性鉴定为最佳电催化剂。最重要的是,获得前所未有的选择性对苯胺的选择性(82%,通过计时法测定的,在半电池设置中具有该电催化剂。这使得其在质子交换膜燃料电池中的工业上有价值的苯胺和电力的电化学发电的有希望的候选者。

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