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Communication: Towards catalytic nitric oxide reduction via oligomerization on boron doped graphene

机译:交流:通过硼掺杂石墨烯的低聚反应实现一氧化氮的催化还原

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We use density functional theory to describe a novel way for metal free catalytic reduction of nitric oxide NO utilizing boron doped graphene. The present study is based on the observation that boron doped graphene and O-N=N-O- act as Lewis acid-base pair allowing the graphene surface to act as a catalyst. The process implies electron assisted N=N bond formation prior to N-O dissociation. Two N-2 + O-2 product channels, one of which favoring N2O formation, are envisaged as outcome of the catalytic process. Besides, we show also that the N-2 + O-2 formation pathways are contrasted by a side reaction that brings to N3O3- formation and decomposition into N2O + NO2-. Published by AIP Publishing.
机译:我们使用密度泛函理论描述了一种利用掺杂硼的石墨烯对金属NO进行金属自由催化还原的新方法。本研究基于以下观察:硼掺杂的石墨烯和O-N = N-O-充当路易斯酸碱对,从而允许石墨烯表面充当催化剂。该过程意味着在N-O解离之前,电子辅助的N = N键形成。构想了两个N-2 + O-2产物通道,其中一个有利于N2O形成,是催化过程的结果。此外,我们还表明,N-2 + O-2的形成途径与形成N3O3-并分解为N2O + NO2-的副反应相反。由AIP Publishing发布。

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