Literature DB >> 32237734

Mechanisms of Nickel-Catalyzed Coupling Reactions and Applications in Alkene Functionalization.

Justin Diccianni1, Qiao Lin1, Tianning Diao1.   

Abstract

<span class="Chemical">Nickel <span class="Chemical">complexes exhibit distinct properties from other group 10 metals, including a small nuclear radius, high paring energy, low electronegativity, and low redox potentials. These properties enable Ni catalysts to accommodate and stabilize paramagnetic intermediates, access radical pathways, and undergo slow β-H elimination. Our research program investigates how each of these fundamental attributes impact the catalytic properties of Ni, in particular in the context of alkene functionalization.Alkenes are versatile functional groups, but stereoselective carbofunctionalization reactions of alkenes have been underdeveloped. This challenge may derive from the difficulty of controlling selectivity via traditional two-electron migratory insertion pathways. Ni catalysts could lead to different stereodetermining steps via radical mechanisms, allowing access to molecular scaffolds that are otherwise difficult to prepare. For example, an asymmetric alkene diarylation reaction developed by our group relies upon the radical properties of Ni(III) intermediates to control the enantioselectivity and give access to a library of chiral α,α,β-triarylethane molecules with biological activity.Mechanistic studies on a two-component reductive 1,2-difunctionalization reaction have shed light on the origin of the cross-electrophile selectivity, as C sp2 and C sp3 electrophiles are independently activated at Ni(I) via two-electron and radical pathways, respectively. Catalyst reduction has been identified to be the turnover-limiting step in this system. A closer investigation of the radical formation step using a (Xantphos)Ni(I)Ar model complex reveals that Ni(I) initiates radical formation via a concerted halogen-abstraction pathway.The low redox potentials of Ni have allowed us to develop a reductive, trans-selective diene cyclization, wherein a classic two-electron mechanism operates on a Ni(I)/Ni(III) platform, accounting for the chemo- and stereoselectivity. This reaction has found applications in the efficient synthesis of pharmaceutically relevant molecules, such as 3,4-dimethylgababutin.The tendency of Ni to undergo one-electron redox processes prompted us to explore dinuclear Ni-mediated bond formations. These studies provide insight into Ni-Ni bonding and how two metal centers react cooperatively to promote C-C, C-X, and N-N bond forming reductive elimination.Finally, isolation of β-agostic Ni and Pd complexes has allowed for X-ray and neutron diffraction characterization of these highly reactive molecules. The bonding parameters serve as unambiguous evidence for β-agostic interactions and help rationalize the slower β-H elimination at Ni relative to Pd. Overall, our research has elucidated the fundamental properties of Ni complexes in several contexts. Greater mechanistic understanding facilitates catalyst design and helps rationalize the reactivity and selectivity in Ni-catalyzed alkene functionalization reactions.

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Year:  2020        PMID: 32237734      PMCID: PMC7958188          DOI: 10.1021/acs.accounts.0c00032

Source DB:  PubMed          Journal:  Acc Chem Res        ISSN: 0001-4842            Impact factor:   22.384


  73 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.  Nickel-catalyzed Enantioselective Hydroarylation and Hydroalkenylation of Styrenes.

Authors:  Yue-Gang Chen; Bin Shuai; Xue-Tao Xu; Yi-Qian Li; Qi-Liang Yang; Hui Qiu; Kun Zhang; Ping Fang; Tian-Sheng Mei
Journal:  J Am Chem Soc       Date:  2019-02-15       Impact factor: 15.419

3.  Oxidation of Ni3(dpa)4Cl2 and Cu3(dpa)4Cl2: nickel-nickel bonding interaction, but no copper-copper bonds.

Authors:  John F Berry; F Albert Cotton; Lee M Daniels; Carlos A Murillo; Xiaoping Wang
Journal:  Inorg Chem       Date:  2003-04-07       Impact factor: 5.165

4.  Metal-metal bonding in mixed valence Ni2(5+) complexes and spectroscopic evidence for a Ni2(6+) species.

Authors:  John F Berry; Eberhard Bothe; F Albert Cotton; Sergey A Ibragimov; Carlos A Murillo; Dino Villagran; Xiaoping Wang
Journal:  Inorg Chem       Date:  2006-05-29       Impact factor: 5.165

Review 5.  Recent advances in homogeneous nickel catalysis.

Authors:  Sarah Z Tasker; Eric A Standley; Timothy F Jamison
Journal:  Nature       Date:  2014-05-15       Impact factor: 49.962

6.  Nickel-catalysed Suzuki-Miyaura coupling of amides.

Authors:  Nicholas A Weires; Emma L Baker; Neil K Garg
Journal:  Nat Chem       Date:  2015-11-09       Impact factor: 24.427

7.  Methods and Mechanisms for Cross-Electrophile Coupling of Csp(2) Halides with Alkyl Electrophiles.

Authors:  Daniel J Weix
Journal:  Acc Chem Res       Date:  2015-05-26       Impact factor: 22.384

8.  Simple, chemoselective, catalytic olefin isomerization.

Authors:  Steven W M Crossley; Francis Barabé; Ryan A Shenvi
Journal:  J Am Chem Soc       Date:  2014-11-20       Impact factor: 15.419

9.  Nickel-catalyzed Negishi arylations of propargylic bromides: a mechanistic investigation.

Authors:  Nathan D Schley; Gregory C Fu
Journal:  J Am Chem Soc       Date:  2014-11-17       Impact factor: 15.419

Review 10.  Transition-Metal Catalysis of Nucleophilic Substitution Reactions: A Radical Alternative to SN1 and SN2 Processes.

Authors:  Gregory C Fu
Journal:  ACS Cent Sci       Date:  2017-06-12       Impact factor: 14.553

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  26 in total

1.  Activation of C-O and C-N Bonds Using Non-Precious-Metal Catalysis.

Authors:  Timothy B Boit; Ana S Bulger; Jacob E Dander; Neil K Garg
Journal:  ACS Catal       Date:  2020-09-10       Impact factor: 13.084

2.  Nickel-Catalyzed Enantioselective Reductive Cross-Coupling Reactions.

Authors:  Kelsey E Poremba; Sara E Dibrell; Sarah E Reisman
Journal:  ACS Catal       Date:  2020-06-24       Impact factor: 13.084

3.  Electroreductive Carbofunctionalization of Alkenes with Alkyl Bromides via a Radical-Polar Crossover Mechanism.

Authors:  Wen Zhang; Song Lin
Journal:  J Am Chem Soc       Date:  2020-11-24       Impact factor: 15.419

4.  Nickel-Catalyzed Dicarbofunctionalization of Alkenes.

Authors:  Xiaoxu Qi; Tianning Diao
Journal:  ACS Catal       Date:  2020-07-02       Impact factor: 13.084

5.  Reactivity of (bi-Oxazoline)organonickel Complexes and Revision of a Catalytic Mechanism.

Authors:  Luchuan Ju; Qiao Lin; Nicole J LiBretto; Clifton L Wagner; Chunhua Tony Hu; Jeffrey T Miller; Tianning Diao
Journal:  J Am Chem Soc       Date:  2021-08-31       Impact factor: 15.419

6.  Ni-Catalyzed Regioselective 1,2-Dialkylation of Alkenes Enabled by the Formation of Two C(sp3)-C(sp3) Bonds.

Authors:  Roshan K Dhungana; Rishi R Sapkota; Laura M Wickham; Doleshwar Niroula; Ramesh Giri
Journal:  J Am Chem Soc       Date:  2020-12-03       Impact factor: 15.419

7.  General Method for Enantioselective Three-Component Carboarylation of Alkenes Enabled by Visible-Light Dual Photoredox/Nickel Catalysis.

Authors:  Lei Guo; Mingbin Yuan; Yanyan Zhang; Fang Wang; Shengqing Zhu; Osvaldo Gutierrez; Lingling Chu
Journal:  J Am Chem Soc       Date:  2020-11-19       Impact factor: 15.419

8.  Redox Activity of Pyridine-Oxazoline Ligands in the Stabilization of Low-Valent Organonickel Radical Complexes.

Authors:  Clifton L Wagner; Gabriel Herrera; Qiao Lin; Chunhua T Hu; Tianning Diao
Journal:  J Am Chem Soc       Date:  2021-04-01       Impact factor: 15.419

Review 9.  Walking metals: catalytic difunctionalization of alkenes at nonclassical sites.

Authors:  Roshan K Dhungana; Rishi R Sapkota; Doleshwar Niroula; Ramesh Giri
Journal:  Chem Sci       Date:  2020-09-07       Impact factor: 9.825

10.  The Effect of Added Ligands on the Reactions of [Ni(COD)(dppf)] with Alkyl Halides: Halide Abstraction May Be Reversible.

Authors:  Megan E Greaves; Thomas O Ronson; Feliu Maseras; David J Nelson
Journal:  Organometallics       Date:  2021-06-16       Impact factor: 3.876

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