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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Diastereoselective diazenyl formation: the key for manganese-catalysed alcohol conversion into (E)-alkenes
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Diastereoselective diazenyl formation: the key for manganese-catalysed alcohol conversion into (E)-alkenes

机译:非对映选择性的二亚苯基形成:锰催化的醇转化为(e) - 烷烃的关键

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The proposed reaction mechanism for the unprecedented direct transformation of primary alcohols into alkenes catalysed by Mn(i)-PNP complexes consists of two cycles. First, the acceptorless dehydrogenation of the alcohol into aldehyde is produced via a concerted mechanism. Secondly, in an excess of hydrazine, hydrazone is formed and reacts with the aldehyde to produce olefins. This process, taking place in base-free conditions, is characterised by the diastereoselective formation of diazenyl intermediates. Based on DFT data, the generation of the (S-N,S,S) diastereoisomer is favoured over the rest, leading in its decomposition to the preferential formation of an (E)-alkene and liberating N-2 and H2O as the only by-products.
机译:所提出的反应机理,用于将伯醇的前所未有的直接转化成Mn(I)-PNP络合物催化的烯烃由两个循环组成。 首先,通过齐心的机制制备醇对醛的无乙醇脱氢。 其次,在过量的肼中,形成腙并与醛反应以产生烯烃。 在无基条件下进行该过程的特征在于二亚苯基中间体的非对映选择性形成。 基于DFT数据,(Sn,S,S)非对映异构体的产生在其余部分上受到青睐,其在其分解中以唯一的唯一形成(E) - 烷烃和解放N-2和H2O的优先形成。 产品。

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