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Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis

Carboacyloxylation of internal alkynes is emerging as a powerful and straightforward strategy for enol ester synthesis. However, the reported examples come with limitations, including the utilization of noble metal catalysts, the control of regio- and Z/E selectivity, and an application in the synth...

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Autores principales: Xiao, Yuanjiu, Tang, Lei, Xu, Tong-Tong, Sheng, Jiang-Yi-Hui, Zhou, Zhongyan, Yue, Lei, Wang, Guoqiang, Oestreich, Martin, Feng, Jian-Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10231430/
https://www.ncbi.nlm.nih.gov/pubmed/37265723
http://dx.doi.org/10.1039/d3sc01394d
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author Xiao, Yuanjiu
Tang, Lei
Xu, Tong-Tong
Sheng, Jiang-Yi-Hui
Zhou, Zhongyan
Yue, Lei
Wang, Guoqiang
Oestreich, Martin
Feng, Jian-Jun
author_facet Xiao, Yuanjiu
Tang, Lei
Xu, Tong-Tong
Sheng, Jiang-Yi-Hui
Zhou, Zhongyan
Yue, Lei
Wang, Guoqiang
Oestreich, Martin
Feng, Jian-Jun
author_sort Xiao, Yuanjiu
collection PubMed
description Carboacyloxylation of internal alkynes is emerging as a powerful and straightforward strategy for enol ester synthesis. However, the reported examples come with limitations, including the utilization of noble metal catalysts, the control of regio- and Z/E selectivity, and an application in the synthesis of enol carbonates. Herein, a boron Lewis acid-catalyzed intermolecular carboacyloxylation of ynamides with esters to access fully substituted acyclic enol esters in high yield with generally high Z/E selectivity (up to >96 : 4) is reported. Most importantly, readily available allylic carbonates are also compatible with this difunctionalization reaction, representing an atom-economic, catalytic and stereoselective protocol for the construction of acyclic β,β-disubstituted enol carbonates of amides for the first time. The application of the carboacyloxylation products to decarboxylative allylations provided a ready access to enantioenriched α-quaternary amides. Moreover, experimental studies and theoretical calculations were performed to illustrate the reaction mechanism and rationalize the stereochemistry.
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spelling pubmed-102314302023-06-01 Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis Xiao, Yuanjiu Tang, Lei Xu, Tong-Tong Sheng, Jiang-Yi-Hui Zhou, Zhongyan Yue, Lei Wang, Guoqiang Oestreich, Martin Feng, Jian-Jun Chem Sci Chemistry Carboacyloxylation of internal alkynes is emerging as a powerful and straightforward strategy for enol ester synthesis. However, the reported examples come with limitations, including the utilization of noble metal catalysts, the control of regio- and Z/E selectivity, and an application in the synthesis of enol carbonates. Herein, a boron Lewis acid-catalyzed intermolecular carboacyloxylation of ynamides with esters to access fully substituted acyclic enol esters in high yield with generally high Z/E selectivity (up to >96 : 4) is reported. Most importantly, readily available allylic carbonates are also compatible with this difunctionalization reaction, representing an atom-economic, catalytic and stereoselective protocol for the construction of acyclic β,β-disubstituted enol carbonates of amides for the first time. The application of the carboacyloxylation products to decarboxylative allylations provided a ready access to enantioenriched α-quaternary amides. Moreover, experimental studies and theoretical calculations were performed to illustrate the reaction mechanism and rationalize the stereochemistry. The Royal Society of Chemistry 2023-04-26 /pmc/articles/PMC10231430/ /pubmed/37265723 http://dx.doi.org/10.1039/d3sc01394d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Xiao, Yuanjiu
Tang, Lei
Xu, Tong-Tong
Sheng, Jiang-Yi-Hui
Zhou, Zhongyan
Yue, Lei
Wang, Guoqiang
Oestreich, Martin
Feng, Jian-Jun
Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis
title Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis
title_full Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis
title_fullStr Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis
title_full_unstemmed Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis
title_short Atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron Lewis acid catalysis
title_sort atom-economic and stereoselective catalytic synthesis of fully substituted enol esters/carbonates of amides in acyclic systems enabled by boron lewis acid catalysis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10231430/
https://www.ncbi.nlm.nih.gov/pubmed/37265723
http://dx.doi.org/10.1039/d3sc01394d
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