A DFT study on FeI/FeII/FeIIImechanism of the cross-coupling between haloalkane and aryl grignard reagent catalyzed by iron-SciOPP complexes

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Abstract

To explore plausible reaction pathways of the cross-coupling reaction between a haloalkane and an aryl metal reagent catalyzed by an iron-phosphine complex, we examine the reaction of FeBrPh(SciOPP) 1 and bromocycloheptane employing density functional theory (DFT) calculations. Besides the cross-coupling, we also examined the competitive pathways of β-hydrogen elimination to give the corresponding alkene byproduct. The DFT study on the reaction pathways explains the cross-coupling selectivity over the elimination in terms of FeI/FeII/FeIII mechanism which involves the generation of alkyl radical intermediates and their propagation in a chain reaction manner. The present study gives insight into the detailed molecular mechanic of the cross-coupling reaction and revises the FeII/FeII mechanisms previously proposed by us and others.

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Sharma, A. K., & Nakamura, M. (2020). A DFT study on FeI/FeII/FeIIImechanism of the cross-coupling between haloalkane and aryl grignard reagent catalyzed by iron-SciOPP complexes. Molecules, 25(16). https://doi.org/10.3390/molecules25163612

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