4.7 Article

Comparing B-H Bond Activation in NiIIX(NNN)-Catalyzed Nitrile Dihydroboration (X = Anionic N-, C-, O-, S-, or P-donor)

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INORGANIC CHEMISTRY
卷 61, 期 49, 页码 19998-20007

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AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.2c03273

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资金

  1. NSERC [2019-05959]
  2. Canada Research Chairs program
  3. University of Ottawa, Canada Foundation for Innovation
  4. Ontario Ministry of Economic Development and Innovation

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Anionic ligands with multiple lone pairs of electrons cooperate with a metal center to achieve redox-neutral B-H bond activation. A series of NiIIX(NNN) complexes were synthesized, and it was found that the phenoxy derivative showed the highest activity, indicating that B-H bond activation occurs at the Ni-X bond. Stoichiometric reactions revealed that substrate insertion into the Ni-H bond is the first step in the catalytic cycle.
One of the key steps in many metal complex-catalyzed hydroboration reactions is B-H bond activation, which results in metal hydride formation. Anionic ligands that include multiple lone pairs of electrons, in cooperation with a metal center, have notable potential in redox-neutral B-H bond activation through metal-ligand cooperation. Herein, using an easily prepared NpyridineNimineNpyrrolide ligand (L2)-, a series of divalent NiIIX(NNN) complexes were synthesized, with X = bromide (2), phenoxide (3), thiophenoxide (4), 2,5-dimethylpyrrolide (5), diphenylphosphide (6), and phenyl (7). The complexes were characterized using 1H and 13C NMR spectroscopy, mass spectrometry, and X-ray crystallography and employed as precatalysts for nitrile dihydroboration. Superior activity of the phenoxy derivative (3) [vs thiophenoxy (4) or phenyl (7)] suggests that B-H bond activation occurs at the Ni-X (vs ligand Ni- Npyrrolide) bond. Furthermore, stoichiometric treatment of 2-7 with a nitrile showed no reaction, whereas stoichiometric reactions of 2-7 with pinacolborane (HBpin) gave the same Ni-H complex for 2, 3, and 5. Considering that only 2, 3, and 5 successfully catalyzed nitrile dihydroboration, we suggest that the catalytic cycle involves a conventional inner sphere pathway initiated by substrate insertion into Ni-H.

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