A Combined Mössbauer, Magnetic Circular Dichroism, and Density Functional Theory Approach for Iron Cross-Coupling Catalysis: Electronic Structure, In Situ Formation, and Reactivity of Iron-Mesityl-Bisphosphines

  • Stephanie L. Daifuku (1534603)
  • Malik H. Al-Afyouni (1787734)
  • Benjamin E. R. Snyder (1385535)
  • Jared L. Kneebone (1446832)
  • Michael L. Neidig (1273662)
Publication date
June 2014

Abstract

While iron-bisphosphines have emerged as effective catalysts for C–C cross-coupling, the nature of the in situ formed iron species, elucidation of the active catalysts and the mechanisms of catalysis have remained elusive. A combination of <sup>57</sup>Fe Mössbauer and magnetic circular dichroism (MCD) spectroscopies of well-defined and in situ formed mesityl-iron­(II)-SciOPP species combined with density functional theory (DFT) investigations provides the first direct insight into electronic structure, bonding and in situ speciation of mesityl-iron­(II)-bisphosphines in the Kumada cross-coupling of MesMgBr and primary alkyl halides using FeCl<sub>2</sub>(SciOPP). Combined with freeze-trapped solution Mössbauer studies of reactions with p...

Extracted data

We use cookies to provide a better user experience.