Literature DB >> 28294603

Structural Insights into the Nature of Fe0 and FeI Low-Valent Species Obtained upon the Reduction of Iron Salts by Aryl Grignard Reagents.

Martin Clémancey1, Thibault Cantat2, Geneviève Blondin1, Jean-Marc Latour1, Pierre Dorlet3, Guillaume Lefèvre2.   

Abstract

Mechanistic studies of the reduction of FeIII and FeII salts by aryl Grignard reagents in toluene/tetrahydrofuran mixtures in the absence of a supporting ligand, as well as structural insights regarding the nature of the low-valent iron species obtained at the end of this reduction process, are reported. It is shown that several reduction pathways can be followed, depending on the starting iron precursor. We demonstrate, moreover, that these pathways lead to a mixture of Fe0 and FeI complexes regardless of the nature of the precursor. Mössbauer and 1H NMR spectroscopies suggest that diamagnetic 16-electron bisarene complexes such as (η4-C6H5Me)2Fe0 can be formed as major species (85% of the overall iron quantity). The formation of a η6-arene-ligated low-spin FeI complex as a minor species (accounting for ca. 15% of the overall iron quantity) is attested by Mössbauer spectroscopy, as well as by continuous-wave electron paramagnetic resonance (EPR) and pulsed-EPR (HYSCORE) spectroscopies. The nature of the FeI coordination sphere is discussed by means of isotopic labeling experiments and density functional theory calculations. It is shown that the most likely low-spin FeI candidate obtained in these systems is a diphenylarene-stabilized species [(η6-C6H5Me)FeIPh2]- exhibiting an idealized C2v topology. This enlightens the nature of the lowest valence states accommodated by iron during the reduction of FeIII and FeII salts by aryl Grignard reagents in the absence of any additional coligand, which so far remained rather unknown. The reactivity of these low-valent FeI and Fe0 complexes in aryl-heteroaryl Kumada cross-coupling conditions has also been investigated, and it is shown that the zerovalent Fe0 species can be used efficiently as a precursor in this reaction, whereas the FeI oxidation state does not exhibit any reactivity.

Entities:  

Year:  2017        PMID: 28294603     DOI: 10.1021/acs.inorgchem.6b02616

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  7 in total

1.  Enabling Two-Electron Pathways with Iron and Cobalt: From Ligand Design to Catalytic Applications.

Authors:  Rebeca Arevalo; Paul J Chirik
Journal:  J Am Chem Soc       Date:  2019-05-28       Impact factor: 15.419

2.  Development and Evolution of Mechanistic Understanding in Iron-Catalyzed Cross-Coupling.

Authors:  Michael L Neidig; Stephanie H Carpenter; Daniel J Curran; Joshua C DeMuth; Valerie E Fleischauer; Theresa E Iannuzzi; Peter G N Neate; Jeffrey D Sears; Nikki J Wolford
Journal:  Acc Chem Res       Date:  2018-12-28       Impact factor: 22.384

3.  Multinuclear iron-phenyl species in reactions of simple iron salts with PhMgBr: identification of Fe4(μ-Ph)6(THF)4 as a key reactive species for cross-coupling catalysis.

Authors:  Stephanie H Carpenter; Tessa M Baker; Salvador B Muñoz; William W Brennessel; Michael L Neidig
Journal:  Chem Sci       Date:  2018-08-24       Impact factor: 9.825

4.  On the Origin of the Promoting Effect Exerted by Magnesium in the ZnCl2-Catalyzed Synthesis of N,N-Diisopropylethylamine.

Authors:  Zeng Hong; Jiancheng Ruan; Xinzhi Chen; Chao Qian; Xin Ge; Shaodong Zhou
Journal:  ACS Omega       Date:  2020-11-11

5.  Correction to "On the Origin of the Promoting Effect Exerted by Magnesium in the ZnCl2-Catalyzed Synthesis of N,N-Diisopropylethylamine".

Authors:  Zeng Hong; Jiancheng Ruan; Xinzhi Chen; Chao Qian; Xin Ge; Shaodong Zhou
Journal:  ACS Omega       Date:  2021-02-10

6.  Mechanistic Facets of the Competition between Cross-Coupling and Homocoupling in Supporting Ligand-Free Iron-Mediated Aryl-Aryl Bond Formations.

Authors:  Edouard Zhou; Pablo Chourreu; Nicolas Lefèvre; Mathieu Ahr; Lidie Rousseau; Christian Herrero; Eric Gayon; Gérard Cahiez; Guillaume Lefèvre
Journal:  ACS Org Inorg Au       Date:  2022-04-29

7.  Iron-Catalyzed Cross-Coupling of Bis-(aryl)manganese Nucleophiles with Alkenyl Halides: Optimization and Mechanistic Investigations.

Authors:  Lidie Rousseau; Alexandre Desaintjean; Paul Knochel; Guillaume Lefèvre
Journal:  Molecules       Date:  2020-02-07       Impact factor: 4.411

  7 in total

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