4.7 Article

Theoretical Study of Ni-Catalyzed C-N Radical-Radical Cross-Coupling

期刊

JOURNAL OF ORGANIC CHEMISTRY
卷 84, 期 6, 页码 3321-3327

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.joc.8b03245

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资金

  1. National Natural Science Foundation of China [21822303, 21772020]
  2. Fundamental Research Funds for the Central Universities (Chongqing University) [2018CDXZ0002, 2018CDPTCG0001/4]
  3. graduate research and innovation foundation of Chongqing, China [CYB18043]

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A computational study was carried out to investigate the mechanism and the origin of chemoselectivity in nickel-catalyzed C-N radical-radical cross-coupling reaction. The global electrophilicity index omega degrees and global nucleophilicity index N degrees were used to quantitatively describe the electrophilic or nucleophilic character of the carbon radical, nitrogen radical, and Ni(II) complex. The calculated omega degrees and N degrees values indicate that introduction of nickel makes C-N cross-coupling to be a facile process. Detailed theoretical results show that the cross-coupling occurs through the combination of Ni(I) complex with a nitrogen-centered radical, a minimum energy crossing point to form the singlet Ni(II) complex, and radical addition of the nucleophilic carbon-centered radical lead to C-N bond formation. On the basis of the theoretical results, a generalized scheme is provided to clarify the origin of the chemoselectivity in nickel-catalyzed C-N radical-radical cross-coupling.

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