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Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties
The reaction of the Schiff base ligand o-OH-C(6)H(4)-CH=N-C(CH(2)OH)(3), H(4)L, with Ni(O(2)CMe)(2)·4H(2)O and lanthanide nitrate salts in a 4:2:1 ratio lead to the formation of the trinuclear complexes [Ni(2)Ln(H(3)L)(4)(O(2)CMe)(2)](NO(3)) (Ln = Sm (1), Eu (2), Gd (3), Tb (4)). The complex cations...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7288099/ https://www.ncbi.nlm.nih.gov/pubmed/32408647 http://dx.doi.org/10.3390/molecules25102280 |
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author | Georgopoulou, Anastasia N. Pissas, Michael Psycharis, Vassilis Sanakis, Yiannis Raptopoulou, Catherine P. |
author_facet | Georgopoulou, Anastasia N. Pissas, Michael Psycharis, Vassilis Sanakis, Yiannis Raptopoulou, Catherine P. |
author_sort | Georgopoulou, Anastasia N. |
collection | PubMed |
description | The reaction of the Schiff base ligand o-OH-C(6)H(4)-CH=N-C(CH(2)OH)(3), H(4)L, with Ni(O(2)CMe)(2)·4H(2)O and lanthanide nitrate salts in a 4:2:1 ratio lead to the formation of the trinuclear complexes [Ni(2)Ln(H(3)L)(4)(O(2)CMe)(2)](NO(3)) (Ln = Sm (1), Eu (2), Gd (3), Tb (4)). The complex cations contain the strictly linear Ni(II)-Ln(III)-Ni(II) moiety. The central Ln(III) ion is bridged to each of the terminal Ni(II) ions through two deprotonated phenolato groups from two different ligands. Each terminal Ni(II) ion is bound to two ligands in distorted octahedral N(2)O(4) environment. The central lanthanide ion is coordinated to four phenolato oxygen atoms from the four ligands, and four carboxylato oxygen atoms from two acetates which are bound in the bidentate chelate mode. The lattice structure of complex 4 consists of two interpenetrating, supramolecular diamond like lattices formed through hydrogen bonds among neighboring trinuclear clusters. The magnetic properties of 1–4 were studied. For 3 the best fit of the magnetic susceptibility and isothermal M(H) data gave J(NiGd) = +0.42 cm(−1), D = +2.95 cm(−1) with g(Ni) = g(Gd) = 1.98. The ferromagnetic nature of the intramolecular Ni···Gd interaction revealed ground state of total spin S = 11/2. The magnetocaloric effect (MCE) parameters for 3 show that the change of the magnetic entropy (−ΔS(m)) reaches a maximum of 14.2 J kg(−1) K(−1) at 2 K. A brief literature survey of complexes containing the Ni(II)-Ln(III)-Ni(II) moiety is discussed in terms of their structural properties. |
format | Online Article Text |
id | pubmed-7288099 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-72880992020-06-17 Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties Georgopoulou, Anastasia N. Pissas, Michael Psycharis, Vassilis Sanakis, Yiannis Raptopoulou, Catherine P. Molecules Article The reaction of the Schiff base ligand o-OH-C(6)H(4)-CH=N-C(CH(2)OH)(3), H(4)L, with Ni(O(2)CMe)(2)·4H(2)O and lanthanide nitrate salts in a 4:2:1 ratio lead to the formation of the trinuclear complexes [Ni(2)Ln(H(3)L)(4)(O(2)CMe)(2)](NO(3)) (Ln = Sm (1), Eu (2), Gd (3), Tb (4)). The complex cations contain the strictly linear Ni(II)-Ln(III)-Ni(II) moiety. The central Ln(III) ion is bridged to each of the terminal Ni(II) ions through two deprotonated phenolato groups from two different ligands. Each terminal Ni(II) ion is bound to two ligands in distorted octahedral N(2)O(4) environment. The central lanthanide ion is coordinated to four phenolato oxygen atoms from the four ligands, and four carboxylato oxygen atoms from two acetates which are bound in the bidentate chelate mode. The lattice structure of complex 4 consists of two interpenetrating, supramolecular diamond like lattices formed through hydrogen bonds among neighboring trinuclear clusters. The magnetic properties of 1–4 were studied. For 3 the best fit of the magnetic susceptibility and isothermal M(H) data gave J(NiGd) = +0.42 cm(−1), D = +2.95 cm(−1) with g(Ni) = g(Gd) = 1.98. The ferromagnetic nature of the intramolecular Ni···Gd interaction revealed ground state of total spin S = 11/2. The magnetocaloric effect (MCE) parameters for 3 show that the change of the magnetic entropy (−ΔS(m)) reaches a maximum of 14.2 J kg(−1) K(−1) at 2 K. A brief literature survey of complexes containing the Ni(II)-Ln(III)-Ni(II) moiety is discussed in terms of their structural properties. MDPI 2020-05-12 /pmc/articles/PMC7288099/ /pubmed/32408647 http://dx.doi.org/10.3390/molecules25102280 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Georgopoulou, Anastasia N. Pissas, Michael Psycharis, Vassilis Sanakis, Yiannis Raptopoulou, Catherine P. Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties |
title | Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties |
title_full | Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties |
title_fullStr | Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties |
title_full_unstemmed | Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties |
title_short | Trinuclear Ni(II)-Ln(III)-Ni(II) Complexes with Schiff Base Ligands: Synthesis, Structure, and Magnetic Properties |
title_sort | trinuclear ni(ii)-ln(iii)-ni(ii) complexes with schiff base ligands: synthesis, structure, and magnetic properties |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7288099/ https://www.ncbi.nlm.nih.gov/pubmed/32408647 http://dx.doi.org/10.3390/molecules25102280 |
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