Catalysis Research Center, Technische Universität München, Ernst-Otto-Fischer-Strasse 1, 85747 Garching bei München, Germany.
Chemistry. 2013 May 3;19(19):5972-9. doi: 10.1002/chem.201203208. Epub 2013 Mar 5.
Imidazolium-based ionic liquids that contain perrhenate anions are very efficient reaction media for the epoxidation of olefins with H2O2 as an oxidant, thus affording cyclooctene in almost quantitative yields. The mechanism of this reaction does not follow the usual pathway through peroxo complexes, as is the case with long-known molecular transition-metal catalysts. By using in situ Raman, FTIR, and NMR spectroscopy and DFT calculations, we have shown that the formation of hydrogen bonds between the oxidant and perrhenate activates the oxidant, thereby leading to the transfer of an oxygen atom onto the olefin demonstrating the special features of an ionic liquid as a reaction environment. The influence of the imidazolium cation and the oxidant (aqueous H2O2, urea hydrogen peroxide, and tert-butyl hydrogen peroxide) on the efficiency of the epoxidation of cis-cyclooctene were examined. Other olefinic substrates were also used in this study and they exhibited good yields of the corresponding epoxides. This report shows the potential of using simple complexes or salts for the activation of hydrogen peroxide, owing to the interactions between the solvent medium and the active complex.
基于咪唑鎓的离子液体,其中含有高铼酸盐阴离子,是用 H2O2 作为氧化剂将烯烃环氧化的非常有效的反应介质,从而几乎定量地得到环辛烯。该反应的机理不遵循通常的通过过氧络合物的途径,这与众所周知的分子过渡金属催化剂的情况不同。通过使用原位拉曼、FTIR 和 NMR 光谱和 DFT 计算,我们已经表明,氧化剂和高铼酸盐之间氢键的形成激活了氧化剂,从而导致氧原子转移到烯烃上,证明了离子液体作为反应环境的特殊性质。还研究了咪唑鎓阳离子和氧化剂(水合 H2O2、尿素过氧化氢和叔丁基过氧化氢)对顺式-环辛烯环氧化效率的影响。在这项研究中还使用了其他烯烃底物,它们表现出相应环氧化物的良好产率。该报告表明,由于溶剂介质与活性配合物之间的相互作用,使用简单的配合物或盐来激活过氧化氢具有潜力。