Cargando…

Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides

The current work focuses on the DFT calculation of the rational mechanism and catalytic activity of the gold(i)-catalyzed isotetradehydro-Diels–Alder cycloaddition of cyanamides and enamides to substituted 2,6-diaminopyridines. IPrAuCl is used as a model catalyst to catalyze cyanamide and enynamide...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Xinghui, Shi, Haixiong, Ji, Caihong, Wang, Jianyi, Jiang, Liping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9377310/
https://www.ncbi.nlm.nih.gov/pubmed/36105958
http://dx.doi.org/10.1039/d2ra02682a
_version_ 1784768314460864512
author Zhang, Xinghui
Shi, Haixiong
Ji, Caihong
Wang, Jianyi
Jiang, Liping
author_facet Zhang, Xinghui
Shi, Haixiong
Ji, Caihong
Wang, Jianyi
Jiang, Liping
author_sort Zhang, Xinghui
collection PubMed
description The current work focuses on the DFT calculation of the rational mechanism and catalytic activity of the gold(i)-catalyzed isotetradehydro-Diels–Alder cycloaddition of cyanamides and enamides to substituted 2,6-diaminopyridines. IPrAuCl is used as a model catalyst to catalyze cyanamide and enynamide reactants with different substituents in DCM as a research system. DFT data indicates that the catalytic cycle starts from the triple bond coordination between the catalyst's gold cation and the enamide to obtain the gold π-complex, and the cyanamide attacks the alkynyl carbon atom from different directions to generate two reaction channels of five-membered and six-membered heterocycles, respectively. The calculation results show that the 2,6-diaminopyridine compounds produced by this catalytic reaction have lower activation energy and higher reactivity, that is, the pyridine skeleton structure can be easily obtained under mild reaction conditions. At the same time, electron-withdrawing substituents in the reactants are more helpful for the reaction. In addition to being in good agreement with the experimental data, the calculated results also provide an important contribution to the further understanding of the mechanism of such reactions.
format Online
Article
Text
id pubmed-9377310
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-93773102022-09-13 Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides Zhang, Xinghui Shi, Haixiong Ji, Caihong Wang, Jianyi Jiang, Liping RSC Adv Chemistry The current work focuses on the DFT calculation of the rational mechanism and catalytic activity of the gold(i)-catalyzed isotetradehydro-Diels–Alder cycloaddition of cyanamides and enamides to substituted 2,6-diaminopyridines. IPrAuCl is used as a model catalyst to catalyze cyanamide and enynamide reactants with different substituents in DCM as a research system. DFT data indicates that the catalytic cycle starts from the triple bond coordination between the catalyst's gold cation and the enamide to obtain the gold π-complex, and the cyanamide attacks the alkynyl carbon atom from different directions to generate two reaction channels of five-membered and six-membered heterocycles, respectively. The calculation results show that the 2,6-diaminopyridine compounds produced by this catalytic reaction have lower activation energy and higher reactivity, that is, the pyridine skeleton structure can be easily obtained under mild reaction conditions. At the same time, electron-withdrawing substituents in the reactants are more helpful for the reaction. In addition to being in good agreement with the experimental data, the calculated results also provide an important contribution to the further understanding of the mechanism of such reactions. The Royal Society of Chemistry 2022-08-15 /pmc/articles/PMC9377310/ /pubmed/36105958 http://dx.doi.org/10.1039/d2ra02682a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Xinghui
Shi, Haixiong
Ji, Caihong
Wang, Jianyi
Jiang, Liping
Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
title Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
title_full Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
title_fullStr Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
title_full_unstemmed Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
title_short Computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
title_sort computational exploration for possible reaction pathways, regioselectivity, and influence of substrate in gold-catalyzed cycloaddition of cyanamides with enynamides
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9377310/
https://www.ncbi.nlm.nih.gov/pubmed/36105958
http://dx.doi.org/10.1039/d2ra02682a
work_keys_str_mv AT zhangxinghui computationalexplorationforpossiblereactionpathwaysregioselectivityandinfluenceofsubstrateingoldcatalyzedcycloadditionofcyanamideswithenynamides
AT shihaixiong computationalexplorationforpossiblereactionpathwaysregioselectivityandinfluenceofsubstrateingoldcatalyzedcycloadditionofcyanamideswithenynamides
AT jicaihong computationalexplorationforpossiblereactionpathwaysregioselectivityandinfluenceofsubstrateingoldcatalyzedcycloadditionofcyanamideswithenynamides
AT wangjianyi computationalexplorationforpossiblereactionpathwaysregioselectivityandinfluenceofsubstrateingoldcatalyzedcycloadditionofcyanamideswithenynamides
AT jiangliping computationalexplorationforpossiblereactionpathwaysregioselectivityandinfluenceofsubstrateingoldcatalyzedcycloadditionofcyanamideswithenynamides