Self-organisation in P-substituted guanidines leading to solution-state isomerisation
Self-organisation in P-substituted guanidines leading to solution-state isomerisation
Different isomeric forms of the amidine unit have been identified in Ph2P(E)C{NR′}{NHR′} (E = S, Se; R′ = iPr, Cy), using both solid- and solution-state techniques.
2410-2411
Grundy, Joanna
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Coles, Martyn P.
4cb5ee08-daf9-4b58-9627-61732e0a818b
Avent, Anthony G.
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Hitchcock, Peter B.
4c0fe381-c3e8-452c-a284-fe14acd3b748
7 November 2004
Grundy, Joanna
0bc72187-8dce-41fc-b809-93a6adbe0980
Coles, Martyn P.
4cb5ee08-daf9-4b58-9627-61732e0a818b
Avent, Anthony G.
6fe5d51d-5f31-454f-938a-ec91c840f2ce
Hitchcock, Peter B.
4c0fe381-c3e8-452c-a284-fe14acd3b748
Grundy, Joanna, Coles, Martyn P., Avent, Anthony G. and Hitchcock, Peter B.
(2004)
Self-organisation in P-substituted guanidines leading to solution-state isomerisation.
Chemical Communications, 10 (21), .
(doi:10.1039/b410041g).
Abstract
Different isomeric forms of the amidine unit have been identified in Ph2P(E)C{NR′}{NHR′} (E = S, Se; R′ = iPr, Cy), using both solid- and solution-state techniques.
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Accepted/In Press date: 19 August 2004
e-pub ahead of print date: 24 September 2004
Published date: 7 November 2004
Identifiers
Local EPrints ID: 426197
URI: http://eprints.soton.ac.uk/id/eprint/426197
ISSN: 1359-7345
PURE UUID: cffaf6f8-a6b6-4f17-88ea-b677a0c5deb7
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Date deposited: 16 Nov 2018 17:30
Last modified: 06 Jun 2024 02:05
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Contributors
Author:
Joanna Grundy
Author:
Martyn P. Coles
Author:
Anthony G. Avent
Author:
Peter B. Hitchcock
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