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首页> 外文期刊>Inorganica Chimica Acta >An ab initio MO-LCAO investigation of the electronic structure of organic hydroperoxides and platinum(II) hydroperoxo complexes: a contribution to the knowledge of the mechanism of olefin epoxidation
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An ab initio MO-LCAO investigation of the electronic structure of organic hydroperoxides and platinum(II) hydroperoxo complexes: a contribution to the knowledge of the mechanism of olefin epoxidation

机译:从头开始对有机氢过氧化物和铂(II)氢过氧配合物的电子结构进行MO-LCAO研究:对烯烃环氧化机理的认识有所贡献

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摘要

A possible new process of activation of the OOH group in the mechanism of ethylene epoxidation catalysed by Pt(II) diphosphine complexes has been investigated by ab initio MO-LCAO calculations. The electronic and geometric features of YOOH species (Y = H, CH3, t-But, CF3, CH3CO, (PH3)(2)Pt(CF3), (PH3)(2)PtCl) have been evaluated and compared. Coordination of the OOH group to platinum induces an inversion of the polarity of the O-O bond when compared to any organic hydroperoxide; parallelly it favours the isomerisation of the OOH group from a hydroperoxo to an oxywater-like structure. This latter effect could be an important factor in favouring the reaction of the platinum coordinated OOH group with ethylene to form ethylene oxide. In fact, calculations on the energetics of the interaction between H2O2 and C2H4 have shown that isomerisation of HOOH to H2OO oxywater structure is the rate determining step for the epoxidation process. (C) 1998 Elsevier Science S.A. [References: 32]
机译:通过从头算MO-LCAO计算研究了Pt(II)二膦配合物催化的乙烯环氧化机理中OOH基团活化的可能新过程。 YOOH种类的电子和几何特征(Y = H,CH3,叔丁基,CF3,CH3CO,(PH3)(2)Pt(CF3),(PH3)(2)PtCl)已得到评估和比较。与任何有机氢过氧化物相比,OOH基团与铂的配位均会引起O-O键极性的反转。同时,它有利于OOH基团从氢过氧异构化成类似氧水的结构。后一种效应可能是促进铂配位的OOH基团与乙烯反应形成环氧乙烷的重要因素。实际上,对H2O2和C2H4之间相互作用的能量的计算表明,HOOH异构化为H2OO氧水结构是环氧化过程的速率决定步骤。 (C)1998 Elsevier Science S.A. [参考:32]

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