Serveur d'exploration sur le cobalt au Maghreb

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New Multidimensional Coordination Polymers with μ2‐ and μ3‐dcno Cyano Carbanion Ligand {dcno– = [(NC)2CC(O)O(CH2)2OH]–}

Identifieur interne : 001182 ( Istex/Corpus ); précédent : 001181; suivant : 001183

New Multidimensional Coordination Polymers with μ2‐ and μ3‐dcno Cyano Carbanion Ligand {dcno– = [(NC)2CC(O)O(CH2)2OH]–}

Auteurs : Samia Benmansour ; Fatima Setifi ; Smail Triki ; Jean-Yves Salaün ; Fanny Vandevelde ; Jean Sala-Pala ; Carlos J. G Mez-García ; Thierry Roisnel

Source :

RBID : ISTEX:D0F151EAB21E95BC0184CBD6AF2319FB8DB10DD4

English descriptors

Abstract

New polymeric materials [M(dcno)2(H2O)2] [M = FeII (1), CoII (2)] and [M(dcno)2] [M = CuII (3), MnII (4)] with dcno– =[(NC)2CC(O)O(CH2)2OH]– = 2,2‐dicyano‐1‐(2‐hydroxyethoxy)ethenolate anion have been synthesised and characterised by IR spectroscopy, X‐ray crystallography and magnetic measurements. In compounds 1 and 2, each organic ligand acts in a bridging mode with its two nitrogen atoms bound to two different metal ions, while in compounds 3 and 4, each organic anion acts as a μ3‐bridging ligand through its two nitrogen atoms and the oxygen atom of the OH group. Each metal ion has a pseudo‐octahedral trans‐MN4O2 environment with four nitrogen atoms from four different organic ligands and two oxygen atoms from two water molecules in compounds 1 and 2 and from the OH group of the cyanocarbanion ligand in compounds 3 and 4. These coordination modes give rise to 1D, 2D and 3D arrangements for compounds 1, 2 and 3–4, respectively. Magnetic measurements show weak antiferromagnetic coupling between metal centres in the four compounds.(© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)

Url:
DOI: 10.1002/ejic.200600449

Links to Exploration step

ISTEX:D0F151EAB21E95BC0184CBD6AF2319FB8DB10DD4

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<div type="abstract">New polymeric materials [M(dcno)2(H2O)2] [M = FeII (1), CoII (2)] and [M(dcno)2] [M = CuII (3), MnII (4)] with dcno– =[(NC)2CC(O)O(CH2)2OH]– = 2,2‐dicyano‐1‐(2‐hydroxyethoxy)ethenolate anion have been synthesised and characterised by IR spectroscopy, X‐ray crystallography and magnetic measurements. In compounds 1 and 2, each organic ligand acts in a bridging mode with its two nitrogen atoms bound to two different metal ions, while in compounds 3 and 4, each organic anion acts as a μ3‐bridging ligand through its two nitrogen atoms and the oxygen atom of the OH group. Each metal ion has a pseudo‐octahedral trans‐MN4O2 environment with four nitrogen atoms from four different organic ligands and two oxygen atoms from two water molecules in compounds 1 and 2 and from the OH group of the cyanocarbanion ligand in compounds 3 and 4. These coordination modes give rise to 1D, 2D and 3D arrangements for compounds 1, 2 and 3–4, respectively. Magnetic measurements show weak antiferromagnetic coupling between metal centres in the four compounds.(© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)</div>
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<p>New polymeric materials [M(dcno)2(H2O)2] [M = FeII (1), CoII (2)] and [M(dcno)2] [M = CuII (3), MnII (4)] with dcno– =[(NC)2CC(O)O(CH2)2OH]– = 2,2‐dicyano‐1‐(2‐hydroxyethoxy)ethenolate anion have been synthesised and characterised by IR spectroscopy, X‐ray crystallography and magnetic measurements. In compounds 1 and 2, each organic ligand acts in a bridging mode with its two nitrogen atoms bound to two different metal ions, while in compounds 3 and 4, each organic anion acts as a μ3‐bridging ligand through its two nitrogen atoms and the oxygen atom of the OH group. Each metal ion has a pseudo‐octahedral trans‐MN4O2 environment with four nitrogen atoms from four different organic ligands and two oxygen atoms from two water molecules in compounds 1 and 2 and from the OH group of the cyanocarbanion ligand in compounds 3 and 4. These coordination modes give rise to 1D, 2D and 3D arrangements for compounds 1, 2 and 3–4, respectively. Magnetic measurements show weak antiferromagnetic coupling between metal centres in the four compounds.(© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)</p>
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<title type="main" xml:lang="en">New Multidimensional Coordination Polymers with μ
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‐ and μ
<sub>3</sub>
‐dcno Cyano Carbanion Ligand {dcno
<sup></sup>
= [(NC)
<sub>2</sub>
CC(O)O(CH
<sub>2</sub>
)
<sub>2</sub>
OH]
<sup></sup>
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<title type="short" xml:lang="en">Coordination Polymers with μ
<sub>2</sub>
‐ and μ
<sub>3</sub>
‐dcno Cyano Carbanion Ligand</title>
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<p>New polymeric materials [M(dcno)
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(H
<sub>2</sub>
O)
<sub>2</sub>
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<b>2</b>
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<sub>2</sub>
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<b>3</b>
), Mn
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<b>4</b>
)] with dcno
<sup></sup>
=[(NC)
<sub>2</sub>
CC(O)O(CH
<sub>2</sub>
)
<sub>2</sub>
OH]
<sup></sup>
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<b>1</b>
and
<b>2</b>
, each organic ligand acts in a bridging mode with its two nitrogen atoms bound to two different metal ions, while in compounds
<b>3</b>
and
<b>4</b>
, each organic anion acts as a μ
<sub>3</sub>
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<i>trans</i>
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<sub>4</sub>
O
<sub>2</sub>
environment with four nitrogen atoms from four different organic ligands and two oxygen atoms from two water molecules in compounds
<b>1</b>
and
<b>2</b>
and from the OH group of the cyanocarbanion ligand in compounds
<b>3</b>
and
<b>4</b>
. These coordination modes give rise to 1D, 2D and 3D arrangements for compounds
<b>1</b>
,
<b>2</b>
and
<b>3</b>
<b>4</b>
, respectively. Magnetic measurements show weak antiferromagnetic coupling between metal centres in the four compounds.(© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)</p>
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<abstract>New polymeric materials [M(dcno)2(H2O)2] [M = FeII (1), CoII (2)] and [M(dcno)2] [M = CuII (3), MnII (4)] with dcno– =[(NC)2CC(O)O(CH2)2OH]– = 2,2‐dicyano‐1‐(2‐hydroxyethoxy)ethenolate anion have been synthesised and characterised by IR spectroscopy, X‐ray crystallography and magnetic measurements. In compounds 1 and 2, each organic ligand acts in a bridging mode with its two nitrogen atoms bound to two different metal ions, while in compounds 3 and 4, each organic anion acts as a μ3‐bridging ligand through its two nitrogen atoms and the oxygen atom of the OH group. Each metal ion has a pseudo‐octahedral trans‐MN4O2 environment with four nitrogen atoms from four different organic ligands and two oxygen atoms from two water molecules in compounds 1 and 2 and from the OH group of the cyanocarbanion ligand in compounds 3 and 4. These coordination modes give rise to 1D, 2D and 3D arrangements for compounds 1, 2 and 3–4, respectively. Magnetic measurements show weak antiferromagnetic coupling between metal centres in the four compounds.(© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)</abstract>
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