Ion-mediated conformational switches
Ion-mediated conformational switches
Molecular switches are ubiquitous in Nature and provide the basis of many forms of transport and signalling. Single synthetic molecules that change conformation, and thus function, reversibly in a stimulus-dependent manner are of great interest not only to chemists but society in general; myriad applications exist in storage, display, sensing and medicine. Here we describe recent developments in the area of ion-mediated switching.
1630-1639
Knipe, Peter C.
a75b6ed7-4d9b-45fc-aacc-49e9e0d0b266
Thompson, Sam
99b7e34e-fe24-401c-b7b0-64e56cbbbcb1
Hamilton, Andrew D.
048a6c75-91bf-4555-ab12-ce885eee65dd
1 March 2015
Knipe, Peter C.
a75b6ed7-4d9b-45fc-aacc-49e9e0d0b266
Thompson, Sam
99b7e34e-fe24-401c-b7b0-64e56cbbbcb1
Hamilton, Andrew D.
048a6c75-91bf-4555-ab12-ce885eee65dd
Knipe, Peter C., Thompson, Sam and Hamilton, Andrew D.
(2015)
Ion-mediated conformational switches.
Chemical Science, 6 (3), .
(doi:10.1039/C4SC03525A).
Abstract
Molecular switches are ubiquitous in Nature and provide the basis of many forms of transport and signalling. Single synthetic molecules that change conformation, and thus function, reversibly in a stimulus-dependent manner are of great interest not only to chemists but society in general; myriad applications exist in storage, display, sensing and medicine. Here we describe recent developments in the area of ion-mediated switching.
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Accepted/In Press date: 19 November 2014
e-pub ahead of print date: 21 November 2014
Published date: 1 March 2015
Organisations:
Chemistry
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Local EPrints ID: 403574
URI: http://eprints.soton.ac.uk/id/eprint/403574
ISSN: 1478-6524
PURE UUID: 13541e95-39e1-437d-994c-f9a71ba453a6
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Date deposited: 07 Dec 2016 09:52
Last modified: 15 Mar 2024 03:54
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Author:
Peter C. Knipe
Author:
Andrew D. Hamilton
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