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Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform

A stepwise build-up of multi-substituted C(sp(3)) carbon centers is an attractive, conceptually simple, but often synthetically challenging type of disconnection. To this end, this report describes how gem-α,α-dimetalloid-substituted benzylic reagents bearing boron/silicon or boron/tin substituent s...

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Autores principales: Chen, Wei W., Fernández, Nahiane Pipaon, Baranda, Marta Díaz, Cunillera, Anton, Rodríguez, Laura G., Shafir, Alexandr, Cuenca, Ana B.
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/PMC8356736/
https://www.ncbi.nlm.nih.gov/pubmed/34447544
http://dx.doi.org/10.1039/d1sc01741a
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author Chen, Wei W.
Fernández, Nahiane Pipaon
Baranda, Marta Díaz
Cunillera, Anton
Rodríguez, Laura G.
Shafir, Alexandr
Cuenca, Ana B.
author_facet Chen, Wei W.
Fernández, Nahiane Pipaon
Baranda, Marta Díaz
Cunillera, Anton
Rodríguez, Laura G.
Shafir, Alexandr
Cuenca, Ana B.
author_sort Chen, Wei W.
collection PubMed
description A stepwise build-up of multi-substituted C(sp(3)) carbon centers is an attractive, conceptually simple, but often synthetically challenging type of disconnection. To this end, this report describes how gem-α,α-dimetalloid-substituted benzylic reagents bearing boron/silicon or boron/tin substituent sets are an excellent stepping stone towards diverse substitution patterns. These gem-dimetalloids were readily accessed, either by known carbenoid insertion into C–B bonds or by the newly developed scalable deprotonation/metallation approach. Highly chemoselective transformations of either the C–Si (or C–Sn) or the C–B bonds in the newly formed gem-C(sp(3)) centers have been achieved through a set of approaches, with a particular focus on exploiting the synthetically versatile polarity reversal in organometalloids by λ(3)-aryliodanes. Of particular note is the metal-free arylation of the C–Si (or C–Sn) bonds in such gem-dimetalloids via the iodane-guided C–H coupling approach. DFT calculations show that this transfer of the (α-Bpin)benzyl group proceeds via unusual [5,5]-sigmatropic rearrangement and is driven by the high-energy iodine(iii) center. As a complementary tool, the gem-dimetalloid C–B bond is shown to undergo a potent and chemoselective Suzuki–Miyaura arylation with diverse Ar–Cl, thanks to the development of the reactive gem-α,α-silyl/BF(3)K building blocks.
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spelling pubmed-83567362021-08-25 Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform Chen, Wei W. Fernández, Nahiane Pipaon Baranda, Marta Díaz Cunillera, Anton Rodríguez, Laura G. Shafir, Alexandr Cuenca, Ana B. Chem Sci Chemistry A stepwise build-up of multi-substituted C(sp(3)) carbon centers is an attractive, conceptually simple, but often synthetically challenging type of disconnection. To this end, this report describes how gem-α,α-dimetalloid-substituted benzylic reagents bearing boron/silicon or boron/tin substituent sets are an excellent stepping stone towards diverse substitution patterns. These gem-dimetalloids were readily accessed, either by known carbenoid insertion into C–B bonds or by the newly developed scalable deprotonation/metallation approach. Highly chemoselective transformations of either the C–Si (or C–Sn) or the C–B bonds in the newly formed gem-C(sp(3)) centers have been achieved through a set of approaches, with a particular focus on exploiting the synthetically versatile polarity reversal in organometalloids by λ(3)-aryliodanes. Of particular note is the metal-free arylation of the C–Si (or C–Sn) bonds in such gem-dimetalloids via the iodane-guided C–H coupling approach. DFT calculations show that this transfer of the (α-Bpin)benzyl group proceeds via unusual [5,5]-sigmatropic rearrangement and is driven by the high-energy iodine(iii) center. As a complementary tool, the gem-dimetalloid C–B bond is shown to undergo a potent and chemoselective Suzuki–Miyaura arylation with diverse Ar–Cl, thanks to the development of the reactive gem-α,α-silyl/BF(3)K building blocks. The Royal Society of Chemistry 2021-07-02 /pmc/articles/PMC8356736/ /pubmed/34447544 http://dx.doi.org/10.1039/d1sc01741a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Wei W.
Fernández, Nahiane Pipaon
Baranda, Marta Díaz
Cunillera, Anton
Rodríguez, Laura G.
Shafir, Alexandr
Cuenca, Ana B.
Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
title Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
title_full Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
title_fullStr Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
title_full_unstemmed Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
title_short Exploring benzylic gem-C(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
title_sort exploring benzylic gem-c(sp(3))–boron–silicon and boron–tin centers as a synthetic platform
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8356736/
https://www.ncbi.nlm.nih.gov/pubmed/34447544
http://dx.doi.org/10.1039/d1sc01741a
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