The University of Southampton
University of Southampton Institutional Repository

A computational study of vicinal fluorination in 2,3-difluorobutane: implications for conformational control in alkane chains

A computational study of vicinal fluorination in 2,3-difluorobutane: implications for conformational control in alkane chains
A computational study of vicinal fluorination in 2,3-difluorobutane: implications for conformational control in alkane chains
A comprehensive conformational analysis of both 2,3-difluorobutane diastereomers is presented based on density functional theory calculations in vacuum and in solution, as well as NMR experiments in solution. While for 1,2-difluoroethane the fluorine gauche effect is clearly the dominant effect determining its conformation, it was found that for 2,3-difluorobutane there is a complex interplay of several effects, which are of similar magnitude but often of opposite sign. As a result, unexpected deviations in dihedral angles, relative conformational energies and populations are observed which cannot be rationalised only by chemical intuition. Furthermore, it was found that it is important to consider the free energies of the various conformers, as these lead to qualitatively different results both in vacuum and in solvent, when compared to calculations based only on the electronic energies. In contrast to expectations, it was found that vicinal syn-difluoride introduction in the butane and by extension, longer hydrocarbon chains, is not expected to lead to an effective stabilisation of the linear conformation. Our findings have implications for the use of the vicinal difluoride motif for conformational control.
computational chemistry, conformational analysis, NMR spectroscopy, organofluorine chemistry
0947-6539
1682-1691
Fox, Stephen J.
a8957e8a-3086-4917-8575-eb0f9e8604cf
Gourdain, Stephanie
b7c37578-112c-4584-bdd9-73836a0da79a
Coulthurst, Anton
a6b027b5-459d-43f0-a8e3-f1aa4c936bef
Fox, Claire
dc9df2f7-b782-41f6-b3f5-b3af4596687c
Kuprov, Ilya
bb07f28a-5038-4524-8146-e3fc8344c065
Essex, Jonathan W.
1f409cfe-6ba4-42e2-a0ab-a931826314b5
Skylaris, Chris-Kriton
8f593d13-3ace-4558-ba08-04e48211af61
Linclau, Bruno
19b9cacd-b8e8-4c65-af36-6352cade84ba
Fox, Stephen J.
a8957e8a-3086-4917-8575-eb0f9e8604cf
Gourdain, Stephanie
b7c37578-112c-4584-bdd9-73836a0da79a
Coulthurst, Anton
a6b027b5-459d-43f0-a8e3-f1aa4c936bef
Fox, Claire
dc9df2f7-b782-41f6-b3f5-b3af4596687c
Kuprov, Ilya
bb07f28a-5038-4524-8146-e3fc8344c065
Essex, Jonathan W.
1f409cfe-6ba4-42e2-a0ab-a931826314b5
Skylaris, Chris-Kriton
8f593d13-3ace-4558-ba08-04e48211af61
Linclau, Bruno
19b9cacd-b8e8-4c65-af36-6352cade84ba

Fox, Stephen J., Gourdain, Stephanie, Coulthurst, Anton, Fox, Claire, Kuprov, Ilya, Essex, Jonathan W., Skylaris, Chris-Kriton and Linclau, Bruno (2015) A computational study of vicinal fluorination in 2,3-difluorobutane: implications for conformational control in alkane chains. Chemistry - A European Journal, 21, 1682-1691. (doi:10.1002/chem.201405317).

Record type: Article

Abstract

A comprehensive conformational analysis of both 2,3-difluorobutane diastereomers is presented based on density functional theory calculations in vacuum and in solution, as well as NMR experiments in solution. While for 1,2-difluoroethane the fluorine gauche effect is clearly the dominant effect determining its conformation, it was found that for 2,3-difluorobutane there is a complex interplay of several effects, which are of similar magnitude but often of opposite sign. As a result, unexpected deviations in dihedral angles, relative conformational energies and populations are observed which cannot be rationalised only by chemical intuition. Furthermore, it was found that it is important to consider the free energies of the various conformers, as these lead to qualitatively different results both in vacuum and in solvent, when compared to calculations based only on the electronic energies. In contrast to expectations, it was found that vicinal syn-difluoride introduction in the butane and by extension, longer hydrocarbon chains, is not expected to lead to an effective stabilisation of the linear conformation. Our findings have implications for the use of the vicinal difluoride motif for conformational control.

Text
201405317_ftp-1.pdf - Accepted Manuscript
Restricted to Repository staff only
Request a copy

More information

e-pub ahead of print date: 21 November 2014
Published date: 15 January 2015
Keywords: computational chemistry, conformational analysis, NMR spectroscopy, organofluorine chemistry
Organisations: Characterisation and Analytics

Identifiers

Local EPrints ID: 373301
URI: http://eprints.soton.ac.uk/id/eprint/373301
ISSN: 0947-6539
PURE UUID: 87a52a50-1328-417c-989b-df552a5fd577
ORCID for Ilya Kuprov: ORCID iD orcid.org/0000-0003-0430-2682
ORCID for Jonathan W. Essex: ORCID iD orcid.org/0000-0003-2639-2746
ORCID for Chris-Kriton Skylaris: ORCID iD orcid.org/0000-0003-0258-3433
ORCID for Bruno Linclau: ORCID iD orcid.org/0000-0001-8762-0170

Catalogue record

Date deposited: 14 Jan 2015 16:49
Last modified: 15 Mar 2024 03:43

Export record

Altmetrics

Contributors

Author: Stephen J. Fox
Author: Stephanie Gourdain
Author: Anton Coulthurst
Author: Claire Fox
Author: Ilya Kuprov ORCID iD
Author: Bruno Linclau ORCID iD

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×