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首页> 外文期刊>Chemistry: A European journal >A Serendipitous Rendezvous with a Four-Center Two-Electron Bonded Intermediate in the Aerial Oxidation of Hydrazine
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A Serendipitous Rendezvous with a Four-Center Two-Electron Bonded Intermediate in the Aerial Oxidation of Hydrazine

机译:在肼的空气氧化中具有四中心两电子键合中间体的偶发性交会。

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摘要

Oxidation by dioxygen has a rich repertoire of mechanistic intricacies. Herein, we report a hitherto unknown paradigm of dioxygen activation reaction which propagates through a four center two electron (4c-2e) bound species. Using static DFT and ab initio quantum chemical techniques we have unraveled the oxidation pathway for hydrazine and its methylated analogues by dioxygen which involves formation of this unconventional 4c-2e bonded species en route to the oxidation products. Inconvertible evidence in favor of such an unprecedented dioxygen activation route is provided by capturing the events of formation of the 4c-2e species in aqueous phase for hydrazine and its congeners and the experimentally observed products from the respective 4c-2e species, like H2O2 and N2H2, diazene in the case of hydrazine using Car-Parrinello molecular dynamics simulations.
机译:双氧氧化具有丰富的机械复杂性。在此,我们报道了迄今未知的双氧激活反应范式,它通过四个中心两个电子(4c-2e)结合的物种传播。使用静态DFT和从头算量子化学技术,我们已经解开了肼和甲基化类似物通过双氧的氧化途径,这涉及在氧化产物途中形成这种非常规的4c-2e键合物种。通过捕获肼和其同源物在水相中形成4c-2e物种的事件以及来自各个4c-2e物种的实验观察到的产物(例如H2O2和N2H2),提供了支持这种前所未有的双氧激活途径的不可逆转的证据。 ,使用Car-Parrinello分子动力学模拟分析肼中的重氮化合物。

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