Mechanism of palladium-catalyzed allylic substitution of tertiary allylic carbonates with sodium sulfinates: unusual bifunctional nucleophile-enabled inner-sphere pathway and origin of regio- and enantioselectivities

dc.contributor.author
Wu, Hongli
dc.contributor.author
Wu, Botao
dc.contributor.author
Kleij, Arjan W.
dc.contributor.author
Huang, Genping
dc.date.accessioned
2024-03-18T08:00:40Z
dc.date.accessioned
2024-04-23T10:55:02Z
dc.date.available
2025-02-07T23:45:09Z
dc.date.issued
2024-02-08
dc.identifier.uri
http://hdl.handle.net/2072/537488
dc.description.abstract
Palladium-catalyzed allylic sulfonylation of tertiary allylic carbonates with sodium sulfinates provides a first general asymmetric approach towards the synthesis of sterically encumbered α,α-disubstituted allylic sulfones. In this report, density functional theory calculations have been performed to establish a detailed reaction mechanism that sheds light on the origin of the regio- and enantioselectivities. The computations reveal that C–S bond formation via the outer-sphere nucleophilic attack is kinetically not feasible, and does not reproduce the experimentally observed high branched type regioselectivity. Instead, the sulfonate nucleophile was found to play a bifunctional role during the C–S bond formation stage. The O-atom acts as a chelating group for the metal center to facilitate the nucleophilic attack by the S-atom, enabling C–S bond formation through a unique inner-sphere manifold that involves a six-membered chair-like transition state. The experimentally observed regio- and enantioselectivities are rationalized well with this mechanistic scenario that features steric and electronic effects, C–H---O hydrogen bonding and C–H---π interactions.
eng
dc.format.extent
24 p.
cat
dc.language.iso
eng
cat
dc.publisher
RSC
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dc.rights
CC-BY
dc.source
RECERCAT (Dipòsit de la Recerca de Catalunya)
dc.subject.other
Química
cat
dc.title
Mechanism of palladium-catalyzed allylic substitution of tertiary allylic carbonates with sodium sulfinates: unusual bifunctional nucleophile-enabled inner-sphere pathway and origin of regio- and enantioselectivities
cat
dc.type
info:eu-repo/semantics/article
cat
dc.type
info:eu-repo/semantics/acceptedVersion
cat
dc.subject.udc
54
cat
dc.relation.projectID
National Natural Science Foundation of China (Nos. 22073066 and 21503143)
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dc.relation.projectID
Cerca program/Generalitat de Catalunya
cat
dc.relation.projectID
ICREA
cat
dc.relation.projectID
MICINN (PID2020-112684GB-100 and the Severo Ochoa Excellence Accreditation 2020–2023 CEX2019-000925-S
cat
dc.identifier.doi
https://doi.org/10.1039/D3CY01493B
dc.rights.accessLevel
info:eu-repo/semantics/openAccess


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