том 86 издание 19 страницы 13514-13534

Synthesis and Mechanistic Insights of the Formation of 3-Hydroxyquinolin-2-ones including Viridicatin from 2-Chloro-N,3-diaryloxirane-2-carboxamides under Acid-Catalyzed Rearrangements

Тип публикацииJournal Article
Дата публикации2021-09-10
scimago Q2
wos Q1
БС1
SJR0.737
CiteScore6.1
Impact factor3.6
ISSN00223263, 15206904
Organic Chemistry
Краткое описание
N-Benzyl-2-chloro-N,3-diaryloxirane-2-carboxamides, easily obtained from aromatic aldehydes and anilides of dichloroacetic acid under Darzens condensation conditions, proved to be excellent starting compounds for the synthesis of 3-hydroxyindolin-2-ones, cyclohepto[b]pyrrole-2,3-diones, and 1-azaspiro[4.5]deca-3,6,9-triene-2-ones via the C(sp2)-C(sp2) bond formation in the first case and C(sp2)-C(sp3) bond formation in the second and third cases. Under optimized reaction conditions, 3-hydroxyindolin-2-ones are obtained in a one-pot process, which involves the treatment of N-benzyl-2-chloro-N,3-diaryloxirane-2-carboxamides with CF3CO2H or AcOH/H2SO4. In the case of intramolecular cyclization, the detailed reaction channels depend strongly on the substituents present in the anilide component and in the aromatic ring of the aldehyde component of N-benzyl-2-chloro-N,3-diaryloxirane-2-carboxamides, as well as the temperature and duration of the reaction. A combined experimental and DFT mechanistic study of the formation of 1-benzyl-3-hydroxy-4-arylquinolin-2(1H)-ones showed that there are three competing reaction channels: (a) ring-closure via the ipso site, (b) ring-closure via the 1,2-Cl shift, and (c) ring-closure via the ortho site. Such mechanistic insights enabled an effective one-pot gram-scale synthesis of viridicatin from benzaldehyde and 2,2-dichloro-N-(4-methoxybenzyl)-N-phenylacetamide.
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Mamedov V. A. et al. Synthesis and Mechanistic Insights of the Formation of 3-Hydroxyquinolin-2-ones including Viridicatin from 2-Chloro-N,3-diaryloxirane-2-carboxamides under Acid-Catalyzed Rearrangements // Journal of Organic Chemistry. 2021. Vol. 86. No. 19. pp. 13514-13534.
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Mamedov V. A., Mamedova V. L., Qu Z., Zhu H., Galimullina V. R., Korshin D. E., Khikmatova G. Z., Litvinov I. A., Latypov S., Sinyashin O. G., Grimme S. Synthesis and Mechanistic Insights of the Formation of 3-Hydroxyquinolin-2-ones including Viridicatin from 2-Chloro-N,3-diaryloxirane-2-carboxamides under Acid-Catalyzed Rearrangements // Journal of Organic Chemistry. 2021. Vol. 86. No. 19. pp. 13514-13534.
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TY - JOUR
DO - 10.1021/acs.joc.1c01592
UR - https://doi.org/10.1021/acs.joc.1c01592
TI - Synthesis and Mechanistic Insights of the Formation of 3-Hydroxyquinolin-2-ones including Viridicatin from 2-Chloro-N,3-diaryloxirane-2-carboxamides under Acid-Catalyzed Rearrangements
T2 - Journal of Organic Chemistry
AU - Mamedov, V. A.
AU - Mamedova, Vera L
AU - Qu, Zheng-Wang
AU - Zhu, Hui
AU - Galimullina, Venera R
AU - Korshin, Dmitry E
AU - Khikmatova, Gulnaz Z
AU - Litvinov, I. A.
AU - Latypov, Shamil
AU - Sinyashin, Oleg G.
AU - Grimme, Stefan
PY - 2021
DA - 2021/09/10
PB - American Chemical Society (ACS)
SP - 13514-13534
IS - 19
VL - 86
PMID - 34505764
SN - 0022-3263
SN - 1520-6904
ER -
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@article{2021_Mamedov,
author = {V. A. Mamedov and Vera L Mamedova and Zheng-Wang Qu and Hui Zhu and Venera R Galimullina and Dmitry E Korshin and Gulnaz Z Khikmatova and I. A. Litvinov and Shamil Latypov and Oleg G. Sinyashin and Stefan Grimme},
title = {Synthesis and Mechanistic Insights of the Formation of 3-Hydroxyquinolin-2-ones including Viridicatin from 2-Chloro-N,3-diaryloxirane-2-carboxamides under Acid-Catalyzed Rearrangements},
journal = {Journal of Organic Chemistry},
year = {2021},
volume = {86},
publisher = {American Chemical Society (ACS)},
month = {sep},
url = {https://doi.org/10.1021/acs.joc.1c01592},
number = {19},
pages = {13514--13534},
doi = {10.1021/acs.joc.1c01592}
}
MLA
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Mamedov, V. A., et al. “Synthesis and Mechanistic Insights of the Formation of 3-Hydroxyquinolin-2-ones including Viridicatin from 2-Chloro-N,3-diaryloxirane-2-carboxamides under Acid-Catalyzed Rearrangements.” Journal of Organic Chemistry, vol. 86, no. 19, Sep. 2021, pp. 13514-13534. https://doi.org/10.1021/acs.joc.1c01592.