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Non-decarbonylative photochemical versus thermal activation of Bu4N[Fe(CO)3(NO)] – the Fe-catalyzed Cloke–Wilson rearrangement of vinyl and arylcyclopropanes

机译:Bu 4 N [Fe(CO) 3 (NO)]的非脱羰光化学热活化-Fe催化的克林逊乙烯基和芳基环丙烷的重排

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摘要

The base metal complex Bu4N[Fe(CO)3(NO)] (TBA[Fe]) catalyzes the rearrangement of vinyl and arylcyclopropanes both under thermal or photochemical conditions to give the corresponding vinyl or aryldihydrofurans in good to excellent yields. Under photochemical conditions the reaction is performed at room temperature. Spectroscopic investigations show that the metal carbonyl catalyst is not decarbonylated. The best performance was observed at a wavelength of 415 nm. icMRCI+Q analysis of the excited singlet and triplet states of the [Fe(CO)3(NO)] anion was performed and used to calculate the vertical excitation energies which are in good agreement with the experimental data. CASSCF analysis indicates that the Fe center in all excited states of the ferrate becomes more electrophilic while adopting a distorted tetrahedral configuration. Both aspects have a positive synergistic effect on the formation of the initial π-complex with the incoming organic substrate.
机译:贱金属配合物Bu 4 N [Fe(CO) 3 (NO)](TBA [Fe] )在热或光化学条件下催化乙烯基和芳基环丙烷的重排,以良好或优异的产率得到相应的乙烯基或芳基二氢呋喃。在光化学条件下,反应在室温下进行。光谱研究表明羰基金属催化剂没有脱羰。在415 nm波长观察到最佳性能。进行了[Fe(CO) 3 (small)(NO)]阴离子的激发单重态和三重态的icMRCI + Q分析,并用于计算垂直激发能。与实验数据非常吻合。 CASSCF分析表明,在采用扭曲的四面体构型时,高铁酸盐在所有激发态下的Fe中心变得更加亲电。这两个方面都对与传入的有机底物形成初始π络合物具有积极的协同作用。

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