首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Epoxidation of olefins catalysed by vanadium–salan complexes: a theoretical mechanistic study
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Epoxidation of olefins catalysed by vanadium–salan complexes: a theoretical mechanistic study

机译:钒-Salan配合物催化的烯烃环氧化:理论机理的研究

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摘要

Plausible mechanisms of olefin epoxidation catalysed by a V–salan model complex [VIV(=O)(L)(H2O)] (1, L = (CH2NHCH2CH=CHO-)2) in the presence of H2O2 are investigated and compared by theoretical methods using density functional theory. Three main routes, i.e. the Mimoun, Sharpless and biradical mechanisms, were examined in detail, and the Sharpless pathway was found to be the most favourable one. The reaction starts from the formation of an active catalytic species [VV(=O)(OO)(LH)] (3c) upon interaction of 1 with H2O2, then concerted, highly synchronous attack of the olefin to 3c occurs yielding the epoxide and catalyst [VV(=O)2(LH)], the latter being oxidized by H2O2 to 3c. The activation barrier strongly depends on the proton location in the catalyst molecule and is the lowest when one of the oxygen atoms of the salan ligand is protonated and the vanadium atom is penta-coordinated with one vacant coordination position (complex 3c). The olefin in this reaction acts as an electron donor (nucleophile) rather than as an electron acceptor (electrophile).
机译:V–salan模型络合物[VIV(= O)(L)(H2O)](1,L =(CH2NHCH2CH = CHO-)2)在存在H2O2的条件下催化烯烃环氧化的合理机理进行了研究并通过理论比较方法使用密度泛函理论。详细研究了三种主要途径,即Mimoun,Sharpless和双自由基机理,发现Sharpless途径是最有利的途径。反应从1与H2O2相互作用时形成活性催化物质[VV(= O)(OO)(LH)](3c)开始,然后发生烯烃高度协调地向3c的进攻,生成环氧化物和催化剂[VV(= O)2(LH)],后者被H 2 O 2氧化至3c。活化势垒强烈地取决于催化剂分子中的质子位置,并且当salan配体的一个氧原子被质子化并且钒原子与一个空位配位位置五配位时,活化势垒最低。该反应中的烯烃充当电子给体(亲核试剂),而不是电子受体(亲电子试剂)。

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