Literature DB >> 18588290

C-F activation of fluorinated arenes using NHC-stabilized nickel(0) complexes: selectivity and mechanistic investigations.

Thomas Schaub1, Peter Fischer, Andreas Steffen, Thomas Braun, Udo Radius, Andreas Mix.   

Abstract

The reaction of [Ni2((i)Pr2Im)4(COD)] 1a or [Ni((i)Pr2Im)2(eta(2)-C2H4)] 1b with different fluorinated arenes is reported. These reactions occur with a high chemo- and regioselectivity. In the case of polyfluorinated aromatics of the type C6F5X such as hexafluorobenzene (X = F) octafluorotoluene (X = CF3), trimethyl(pentafluorophenyl)silane (X = SiMe3), or decafluorobiphenyl (X = C6F5) the C-F activation regioselectively takes place at the C-F bond in the para position to the X group to afford the complexes trans-[Ni((i)Pr2Im)2(F)(C6F5)]2, trans-[Ni((i)Pr2Im)2(F)(4-(CF3)C6F4)] 3, trans-[Ni((i)Pr2Im)2(F)(4-(C6F5)C6F4)] 4, and trans-[Ni((i)Pr2Im)2(F)(4-(SiMe3)C6F4)] 5. Complex 5 was structurally characterized by X-ray diffraction. The reaction of 1a with partially fluorinated aromatic substrates C6H(x)F(y) leads to the products of a C-F activation trans-[Ni((i)Pr2Im)2(F)(2-C6FH4)] 7, trans-[Ni((i)Pr2Im)2(F)(3,5-C6F2H3)] 8, trans-[Ni((i)Pr2Im)2(F)(2,3-C6F2H3)] 9a and trans-[Ni((i)Pr2Im)2(F)(2,6-C6F2H3)] 9b, trans-[Ni((i)Pr2Im)2(F)(2,5-C6F2H3)] 10, and trans-[Ni((i)Pr2Im)2(F)(2,3,5,6-C6F4H)] 11. The reaction of 1a with octafluoronaphthalene yields exclusively trans-[Ni((i)Pr2Im)2(F)(1,3,4,5,6,7,8-C10F7)] 6a, the product of an insertion into the C-F bond in the 2-position, whereas for the reaction of 1b with octafluoronaphthalene the two isomers trans-[Ni((i)Pr2Im)2(F)(1,3,4,5,6,7,8-C10F7)] 6a and trans-[Ni((i)Pr2Im)2(F)(2,3,4,5,6,7,8-C10F7)] 6b are formed in a ratio of 11:1. The reaction of 1a or of 1b with pentafluoropyridine at low temperatures affords trans-[Ni((i)Pr2Im)2(F)(4-C5NF4)] 12a as the sole product, whereas the reaction of 1b performed at room temperature leads to the generation of trans-[Ni((i)Pr2Im)2(F)(4-C5NF4)] 12a and trans-[Ni((i)Pr2Im)2(F)(2-C5NF4)] 12b in a ratio of approximately 1:2. The detection of intermediates as well as kinetic studies gives some insight into the mechanistic details for the activation of an aromatic carbon-fluorine bond at the {Ni((i)Pr2Im)2} complex fragment. The intermediates of the reaction of 1b with hexafluorobenzene and octafluoronaphthalene, [Ni((i)Pr2Im)2(eta(2)-C6F6)] 13 and [Ni((i)Pr2Im)2(eta(2)-C10F8)] 14, have been detected in solution. They convert into the C-F activation products. Complex 14 was structurally characterized by X-ray diffraction. The rates for the loss of 14 at different temperatures for the C-F activation of the coordinated naphthalene are first order and the estimated activation enthalpy Delta H(double dagger) for this process was determined to be Delta H(double dagger) = 116 +/- 8 kJ mol(-1) (Delta S(double dagger) = 37 +/- 25 J K(-1) mol(-1)). Furthermore, density functional theory calculations on the reaction of 1a with hexafluorobenzene, octafluoronaphthalene, octafluorotoluene, 1,2,4-trifluorobenzene, and 1,2,3-trifluorobenzene are presented.

Entities:  

Year:  2008        PMID: 18588290     DOI: 10.1021/ja074640e

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  9 in total

Review 1.  Nickel-catalyzed cross-couplings involving carbon-oxygen bonds.

Authors:  Brad M Rosen; Kyle W Quasdorf; Daniella A Wilson; Na Zhang; Ana-Maria Resmerita; Neil K Garg; Virgil Percec
Journal:  Chem Rev       Date:  2010-12-06       Impact factor: 60.622

2.  Photochemical Reactions of Fluorinated Pyridines at Half-Sandwich Rhodium Complexes: Competing Pathways of Reaction.

Authors:  Barbara Procacci; Robin J Blagg; Robin N Perutz; Nuria Rendón; Adrian C Whitwood
Journal:  Organometallics       Date:  2013-12-31       Impact factor: 3.876

3.  Ring-whizzing in polyene-PtL2 complexes revisited.

Authors:  Oluwakemi A Oloba-Whenu; Thomas A Albright; Chirine Soubra-Ghaoui
Journal:  Beilstein J Org Chem       Date:  2016-07-07       Impact factor: 2.883

4.  Bite-angle bending as a key for understanding group-10 metal reactivity of d10-[M(NHC)2] complexes with sterically modest NHC ligands.

Authors:  Florian Hering; Jörn Nitsch; Ursula Paul; Andreas Steffen; F Matthias Bickelhaupt; Udo Radius
Journal:  Chem Sci       Date:  2014-12-03       Impact factor: 9.825

5.  Case Study of N-i Pr versus N-Mes Substituted NHC Ligands in Nickel Chemistry: The Coordination and Cyclotrimerization of Alkynes at [Ni(NHC)2 ].

Authors:  Lukas Tendera; Moritz Helm; Mirjam J Krahfuss; Maximilian W Kuntze-Fechner; Udo Radius
Journal:  Chemistry       Date:  2021-11-16       Impact factor: 5.020

6.  Fluorination Reactions at a Platinum Carbene Complex: Reaction Routes to SF3 , S(=O)F and Fluorido Complexes.

Authors:  Dilcan Dirican; Maria Talavera; Thomas Braun
Journal:  Chemistry       Date:  2021-10-29       Impact factor: 5.020

7.  Coligand role in the NHC nickel catalyzed C-F bond activation: investigations on the insertion of bis(NHC) nickel into the C-F bond of hexafluorobenzene.

Authors:  Maximilian W Kuntze-Fechner; Hendrik Verplancke; Lukas Tendera; Martin Diefenbach; Ivo Krummenacher; Holger Braunschweig; Todd B Marder; Max C Holthausen; Udo Radius
Journal:  Chem Sci       Date:  2020-10-06       Impact factor: 9.825

8.  Defluorosilylation of fluoroarenes and fluoroalkanes.

Authors:  Benqiang Cui; Shichong Jia; Etsuko Tokunaga; Norio Shibata
Journal:  Nat Commun       Date:  2018-10-22       Impact factor: 14.919

9.  Catalytic Hydrodefluorination via Oxidative Addition, Ligand Metathesis, and Reductive Elimination at Bi(I)/Bi(III) Centers.

Authors:  Yue Pang; Markus Leutzsch; Nils Nöthling; Felix Katzenburg; Josep Cornella
Journal:  J Am Chem Soc       Date:  2021-08-06       Impact factor: 15.419

  9 in total

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