AI Article Synopsis

  • High valent iron terminal imido species (Fe=NR) are important for C-H functionalization, but detailed studies on their structure-reactivity relationships and the effects of N-substituents are limited.
  • This study presents insights from spectroscopic and computational analyses of a unique iron(IV)-bisimido complex with trifluoromethyl groups that shows distinct electronic properties compared to related complexes.
  • The findings indicate that the electronic structure of this complex enhances its efficiency in C-H activation, offering advantages over similar complexes with less reactive grounding states.

Article Abstract

High valent iron terminal imido species (Fe[double bond, length as m-dash]NR) have been shown to be key reactive intermediates in C-H functionalization. However, the detailed structure-reactivity relationship in Fe[double bond, length as m-dash]NR species derived from studies of structurally well-characterized high-valent Fe[double bond, length as m-dash]NR complexes are still scarce, and the impact of imido N-substituents (electron-donating electron-withdrawing) on their electronic structures and reactivities has not been thoroughly explored. In this study, we report spectroscopic and computational studies on a rare = 1 iron(iv)-bisimido complex featuring trifluoromethyl groups on the imido N-substituents, [(IPr)Fe(NC(CF)Ph)] (2), and two closely related = 0 congeners bearing alkyl and aryl substituents, [(IPr)Fe(NC(CMe)Ph)] (3) and [(IPr)Fe(NDipp)] (1), respectively. Compared with 1 and 3, 2 exhibits a decreased Fe[double bond, length as m-dash]NR bond covalency due to the electron-withdrawing and the steric effect of the N-substituents, which further leads to a pseudo doubly degenerate ground electronic structure and spin polarization induced β spin density on the imido nitrogens. This unique electronic structure, which differs from those of the well-studied Fe(iv)-oxido complexes and many previously reported Fe(iv)-imido complexes, provides both kinetic and thermodynamic advantages for facile C-H activation, compared to the = 0 counterparts.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10016330PMC
http://dx.doi.org/10.1039/d2sc06273aDOI Listing

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