Control of dynamic sp<sup>3</sup>-C stereochemistry.

Symplectic ID
2124341
Source
Europe PubMed Central
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Friday, 5 December, 2025 - 21:35
DOI
10.1038/s41557-023-01156-7
Publication Date
Monday, 1 May, 2023
First Page
615
Last Page
624
Authors
Bismillah, AN
Johnson, TG
Hussein, BA
Turley, AT
Saha, PK
Wong, HC
Aguilar, JA
Yufit, DS
McGonigal, PR
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Abstract
Stereogenic sp<sup>3</sup>-hybridized carbon centres are fundamental building blocks of chiral molecules. Unlike dynamic stereogenic motifs, such as sp<sup>3</sup>-nitrogen centres or atropisomeric biaryls, sp<sup>3</sup>-carbon centres are usually fixed, requiring intermolecular reactions to undergo configurational changes. Here we report the internal enantiomerization of fluxional carbon cages and the consequences of their adaptive configurations for the transmission of stereochemical information. The sp<sup>3</sup>-carbon stereochemistry of the rigid tricyclic cages is inverted through strain-assisted Cope rearrangements, emulating the low-barrier configurational dynamics typical for sp<sup>3</sup>-nitrogen inversion or conformational isomerism. This dynamic enantiomerization can be stopped, restarted or slowed by external reagents, while the configuration of the cage is controlled by neighbouring, fixed stereogenic centres. As part of a phosphoramidite-olefin ligand, the fluxional cage acts as a conduit to transmit stereochemical information from the ligand while also transferring its dynamic properties to chiral-at-metal coordination environments, influencing catalysis, ion pairing and ligand exchange energetics.
ISSN
1755-4330
Journal Title
Nature chemistry
eISSN
1755-4349
Volume
15
Issue
5
ID at Source
MED:36914791
Publication Status
Published
Open access
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chem2018