Cargando…

Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent

Transition metal-free direct and base-catalyzed 1,2-diborations of arylacetylenes using pinB-BMes(2) provided a syn/anti-isomeric mixture of diborylalkenes. The kinetic analysis showed that the reaction rate and isomer ratio were affected by reaction conditions and substituents on the aryl ring. DFT...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Linlin, Kojima, Chiemi, Lee, Ka-Ho, Morisako, Shogo, Lin, Zhenyang, Yamashita, Makoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8293998/
https://www.ncbi.nlm.nih.gov/pubmed/34349954
http://dx.doi.org/10.1039/d1sc02863d
_version_ 1783725153176256512
author Wu, Linlin
Kojima, Chiemi
Lee, Ka-Ho
Morisako, Shogo
Lin, Zhenyang
Yamashita, Makoto
author_facet Wu, Linlin
Kojima, Chiemi
Lee, Ka-Ho
Morisako, Shogo
Lin, Zhenyang
Yamashita, Makoto
author_sort Wu, Linlin
collection PubMed
description Transition metal-free direct and base-catalyzed 1,2-diborations of arylacetylenes using pinB-BMes(2) provided a syn/anti-isomeric mixture of diborylalkenes. The kinetic analysis showed that the reaction rate and isomer ratio were affected by reaction conditions and substituents on the aryl ring. DFT calculations indicated that direct addition proceeded via the interaction of acetylene-π with the BMes(2) fragment. In contrast, for the base-catalyzed diboration, the previously isolated sp(2)–sp(3) diborane and borataallene were confirmed as stable intermediates by calculations. The whole reaction pathways can be divided into the Bpin-migration and deprotonation steps, where the borataallene should be considered as a common intermediate. It should be noted that the deprotonation step is reversible and affords the kinetically less favoured isomer under the thermodynamic conditions. As a result, the composition of isomeric products, in the base-catalyzed diboration, is attributed to the small difference of activation barriers between direct and base-catalyzed systems.
format Online
Article
Text
id pubmed-8293998
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-82939982021-08-03 Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent Wu, Linlin Kojima, Chiemi Lee, Ka-Ho Morisako, Shogo Lin, Zhenyang Yamashita, Makoto Chem Sci Chemistry Transition metal-free direct and base-catalyzed 1,2-diborations of arylacetylenes using pinB-BMes(2) provided a syn/anti-isomeric mixture of diborylalkenes. The kinetic analysis showed that the reaction rate and isomer ratio were affected by reaction conditions and substituents on the aryl ring. DFT calculations indicated that direct addition proceeded via the interaction of acetylene-π with the BMes(2) fragment. In contrast, for the base-catalyzed diboration, the previously isolated sp(2)–sp(3) diborane and borataallene were confirmed as stable intermediates by calculations. The whole reaction pathways can be divided into the Bpin-migration and deprotonation steps, where the borataallene should be considered as a common intermediate. It should be noted that the deprotonation step is reversible and affords the kinetically less favoured isomer under the thermodynamic conditions. As a result, the composition of isomeric products, in the base-catalyzed diboration, is attributed to the small difference of activation barriers between direct and base-catalyzed systems. The Royal Society of Chemistry 2021-06-17 /pmc/articles/PMC8293998/ /pubmed/34349954 http://dx.doi.org/10.1039/d1sc02863d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Wu, Linlin
Kojima, Chiemi
Lee, Ka-Ho
Morisako, Shogo
Lin, Zhenyang
Yamashita, Makoto
Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent
title Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent
title_full Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent
title_fullStr Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent
title_full_unstemmed Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent
title_short Mechanistic study on the reaction of pinB-BMes(2) with alkynes based on experimental investigation and DFT calculations: gradual change of mechanism depending on the substituent
title_sort mechanistic study on the reaction of pinb-bmes(2) with alkynes based on experimental investigation and dft calculations: gradual change of mechanism depending on the substituent
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8293998/
https://www.ncbi.nlm.nih.gov/pubmed/34349954
http://dx.doi.org/10.1039/d1sc02863d
work_keys_str_mv AT wulinlin mechanisticstudyonthereactionofpinbbmes2withalkynesbasedonexperimentalinvestigationanddftcalculationsgradualchangeofmechanismdependingonthesubstituent
AT kojimachiemi mechanisticstudyonthereactionofpinbbmes2withalkynesbasedonexperimentalinvestigationanddftcalculationsgradualchangeofmechanismdependingonthesubstituent
AT leekaho mechanisticstudyonthereactionofpinbbmes2withalkynesbasedonexperimentalinvestigationanddftcalculationsgradualchangeofmechanismdependingonthesubstituent
AT morisakoshogo mechanisticstudyonthereactionofpinbbmes2withalkynesbasedonexperimentalinvestigationanddftcalculationsgradualchangeofmechanismdependingonthesubstituent
AT linzhenyang mechanisticstudyonthereactionofpinbbmes2withalkynesbasedonexperimentalinvestigationanddftcalculationsgradualchangeofmechanismdependingonthesubstituent
AT yamashitamakoto mechanisticstudyonthereactionofpinbbmes2withalkynesbasedonexperimentalinvestigationanddftcalculationsgradualchangeofmechanismdependingonthesubstituent