Polynuclear ampyrone based 3d coordination clusters
Polynuclear ampyrone based 3d coordination clusters
The use of the monoanionic Schiff base ligand (E)-4-(2-hydroxybenzylideneamino)-2,3-dimethyl-1-phenyl-1,2-dihydropyrazol-5-one in transition (Co, Ni and Cu) coordination chemistry yields mono-, tetra- and pentanuclear Coordination Clusters with different structural motifs. An organic transformation occurs in the ligand in the Cu compound for which theoretical studies are presented. Solution studies, topological issues and magnetic studies are discussed. The present results demonstrate the richness of the coordination chemistry of this monoprotic organic ligand, which promotes the formation of high-nuclearity CCs.
1411-1421
Sampani, Stavroula I.
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Loukopoulos, Edward
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Azam, Mohammad
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Griffiths, Kieran
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Abdul-Sada, Alaa
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Tizzard, Graham J.
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Coles, Simon J.
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Escuer, Albert
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Tsipis, Athanassios C.
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Kostakis, George E.
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14 March 2018
Sampani, Stavroula I.
346af07d-2a76-47b8-b21d-7416ebb69efc
Loukopoulos, Edward
0c3abad3-9ed4-46cd-b03f-9cbb2fd3fff7
Azam, Mohammad
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Griffiths, Kieran
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Abdul-Sada, Alaa
03b55c32-8062-4b73-926d-f243ca078a83
Tizzard, Graham J.
8474c0fa-40df-43a6-a662-7f3c4722dbf2
Coles, Simon J.
3116f58b-c30c-48cf-bdd5-397d1c1fecf8
Escuer, Albert
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Tsipis, Athanassios C.
16b23a31-6d5d-4031-9502-bc11de5fc47d
Kostakis, George E.
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Sampani, Stavroula I., Loukopoulos, Edward, Azam, Mohammad, Griffiths, Kieran, Abdul-Sada, Alaa, Tizzard, Graham J., Coles, Simon J., Escuer, Albert, Tsipis, Athanassios C. and Kostakis, George E.
(2018)
Polynuclear ampyrone based 3d coordination clusters.
CrystEngComm, 20, .
(doi:10.1039/C7CE02093G).
Abstract
The use of the monoanionic Schiff base ligand (E)-4-(2-hydroxybenzylideneamino)-2,3-dimethyl-1-phenyl-1,2-dihydropyrazol-5-one in transition (Co, Ni and Cu) coordination chemistry yields mono-, tetra- and pentanuclear Coordination Clusters with different structural motifs. An organic transformation occurs in the ligand in the Cu compound for which theoretical studies are presented. Solution studies, topological issues and magnetic studies are discussed. The present results demonstrate the richness of the coordination chemistry of this monoprotic organic ligand, which promotes the formation of high-nuclearity CCs.
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Accepted/In Press date: 28 January 2018
e-pub ahead of print date: 29 January 2018
Published date: 14 March 2018
Identifiers
Local EPrints ID: 417815
URI: http://eprints.soton.ac.uk/id/eprint/417815
ISSN: 1466-8033
PURE UUID: e4bec2c0-fe21-4692-ae6a-de1847f98541
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Date deposited: 14 Feb 2018 17:30
Last modified: 16 Mar 2024 06:11
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Contributors
Author:
Stavroula I. Sampani
Author:
Edward Loukopoulos
Author:
Mohammad Azam
Author:
Kieran Griffiths
Author:
Alaa Abdul-Sada
Author:
Albert Escuer
Author:
Athanassios C. Tsipis
Author:
George E. Kostakis
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