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Oxygenation of sulfides by bis(mu-oxo)dicopper(III) complexes. A theoretical study

机译:双(μ-氧代)双金属(III)配合物对硫化物的氧化作用。理论研究

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摘要

The First computational study on the oxygenation of organic sulfides by bis(mu-oxo)dicopper(III) complexes was carried out at PWP91/LACV3P** + //PWP91/LACVP* level of theory. Two reaction paths have been explored. One is the precoordination of sulfur with copper atom followed by oxygen transfer. Another is the precoordination with oxygen. In both cases the precoordination was found to be very weak to give a detectable intermediate. The oxygen atom transfer shows activation energies of less than 10 kcal mol both in the solution and in the gas phase suggesting validity of the proposed mechanism. Dissociation of the intermediate formed after oxygen atom transfer gives free sulfoxide. Solvation plays an important role favoring the reaction and facilitating dissociation of the final complex. The ground state of all studied dicopper intermediates are open-shell singlets. Complexes 4a,b and 5 have significant contribution from biradical structure to the ground state with antiferromagnetic coupling between copper atoms. (c) 2005 Elsevier B.V. All rights reserved.
机译:在理论水平的PWP91 / LACV3P ** + // PWP91 / LACVP *水平上进行了双(mu-oxo)双金属(III)配合物氧化有机硫化物的首次计算研究。已经探索了两种反应途径。一种是硫与铜原子的预配位,然后进行氧的转移。另一个是与氧气的预配位。在这两种情况下,均发现预配位非常弱,无法提供可检测的中间体。氧原子转移在溶液中和在气相中均显示出小于10 kcal mol的活化能,表明该机理的有效性。氧原子转移后形成的中间体离解,得到游离亚砜。溶剂化在促进反应和促进最终络合物的离解中起重要作用。所有研究过的双铜中间体的基态均为开壳单线态。配合物4a,b和5从双自由基结构到基态具有重大贡献,铜原子之间具有反铁磁耦合。 (c)2005 Elsevier B.V.保留所有权利。

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