| Literature DB >> 30996908 |
Atsushi Obata1, Akane Sasagawa1, Ken Yamazaki1, Yusuke Ano1, Naoto Chatani1.
Abstract
The reaction of N-heteroaromatic compounds, such as 2-aryl-pyrrole, benzimidazole, imidazole, indole, and pyrazole derivatives, with alkynes in the presence of a catalytic amount of a nickel complex results in C-H/N-H oxidative annulation. The reaction shows a high functional group compatibility. While both Ni(0) and Ni(ii) complexes show a high catalytic activity, Ni(0) is proposed as a key catalytic species in the main catalytic cycle. In the case of the Ni(ii) system, the presence of a catalytic amount of a strong base, such as KOBu t , is required for the reaction to proceed. In sharp contrast, a base is not required in the case of the Ni(0) system. The proposed mechanism is supported by DFT studies.Entities:
Year: 2019 PMID: 30996908 PMCID: PMC6430018 DOI: 10.1039/c8sc05063e
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Ni-catalyzed oxidative C–H/N–H annulation of N-heteroaromatic compounds with alkynes.
Ni-catalyzed reaction of 2-phenylindole (1a) with diphenylacetylene
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Isolated by GPC.
n.d. = not determined.
Scope of 2-arylindoles
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Reaction conditions: 2-arylindole (0.25 mmol), diphenylacetylene (1.25 mmol), Ni(OTf)2 (0.025 mmol), dtbbpy (0.05 mmol), and KOBu (0.05 mmol) at 180 °C for 36 h. Isolated by GPC.
The number in parentheses refers to the regioselectivity.
The reaction was carried out for 60 h.
Ligand (50 mol%) and toluene (0.25 mL).
Ni-catalyzed reaction of 2-phenylimidazole (3a) with diphenylacetylene
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Isolated yield.
Ni-catalyzed reaction of 2-arylimidazoles (3) with alkynes
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Reaction conditions: 2-arylimidazole (0.25 mmol), alkyne (1.25 mmol), Ni(OAc)2 (0.025 mmol), dtbbpy (0.05 mmol), and KOBu (0.05 mmol) in toluene (0.5 mL) at 160 °C for 20 h.
The number in parentheses refers to the isolated yield by HPLC.
Other N-heteroaromatic compounds
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Scheme 2Mechanistic experiments.
Ni(0)/no base catalytic system
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Reaction conditions: 2-arylimidazole (0.25 mmol), alkyne (1.25 mmol), Ni(cod)2 (0.025 mmol), and dtbbpy (0.05 mmol) in toluene (0.5 mL) at 160 °C for 20 h.
0.125 Mmol scale.
Scheme 3Proposed mechanism.
Scheme 4Comparison of the LLHT path (red line) and the N–H oxidative addition path (blue line) in the main catalytic cycle calculated at the B3PW91/6-311+G(2d,p)-SDD(Ni)/PCM//B3LYP/6-31+G(d)-Lanl2dz(Ni) level of theory.