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The Versatility of Ethylene Glycol to Tune the Dimensionality and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion Magnets
[Image: see text] We exploit the high versatility of the solvent ethylene glycol (eg = CH(2)OH-CH(2)OH) acting as a ligand with three different coordination modes: terminal (κO), chelate (κ(2)O,O′), and bridge (1κO,2κO′) to prepare a novel family of six different coordination polymers with Dy(III) a...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2023
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10389752/ https://www.ncbi.nlm.nih.gov/pubmed/37529082 http://dx.doi.org/10.1021/acs.cgd.2c01409 |
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author | Benmansour, Samia Pintado-Zaldo, Cristina Martínez-Ponce, Javier Hernández-Paredes, Antonio Valero-Martínez, Antonio Gómez-Benmansour, Miriam Gómez-García, Carlos J. |
author_facet | Benmansour, Samia Pintado-Zaldo, Cristina Martínez-Ponce, Javier Hernández-Paredes, Antonio Valero-Martínez, Antonio Gómez-Benmansour, Miriam Gómez-García, Carlos J. |
author_sort | Benmansour, Samia |
collection | PubMed |
description | [Image: see text] We exploit the high versatility of the solvent ethylene glycol (eg = CH(2)OH-CH(2)OH) acting as a ligand with three different coordination modes: terminal (κO), chelate (κ(2)O,O′), and bridge (1κO,2κO′) to prepare a novel family of six different coordination polymers with Dy(III) and three different anilato ligands (3,6-disubstituted-2,5-dihydroxy-1,4-benzoquinone dianion = C(6)O(4)X(2)(2–), with X = H, Cl, and Br). With the X = H derivative (dhbq(2–)), we have prepared [Dy(2)(dhbq)(3)(eg)(2)(μ-eg)]·4eg·2H(2)O (1), a 3D diamond-like network with a chelate and bridging eg molecules. With the X = Cl derivative (chloranilato), we have prepared [Dy(2)(C(6)O(4)Cl(2))(3)(eg)(4)]·2eg·H(2)O (2) and [Dy(2)(C(6)O(4)Cl(2))(3)(μ-eg)(H(2)O)(4)]·2eg·7H(2)O (3). Compound 2 has a 2D (6,3)-gon brick-wall lattice and contains a chelate and a terminal eg molecule. Compound 3 has a 3D diamond-like topology as 1, although now the chelate eg has been replaced by two water molecules. Finally, with the X = Br derivative (bromanilato), we have obtained [Dy(2)(C(6)O(4)Br(2))(3)(eg)(2)(CH(3)OH)(2)]·2eg·4CH(3)OH (4), [Dy(2)(C(6)O(4)Br(2))(3)(eg)(4)]·4eg (5), and [Dy(2)(C(6)O(4)Br(2))(3)(eg)(3)(H(2)O)]·2eg·H(2)O (6). Compound 4 has a 2D (6,3)-gon herringbone topology and contains a chelate eg and a MeOH molecule. Compounds 5 and 6 have a 2D (6,3)-gon brick-wall topology with a chelate and a terminal eg molecules (in 5 and in one of the two independent Dy centers of 6). The other Dy center in 6 has a chelate eg and a water molecule. All the compounds show slow relaxation of the magnetization at low temperatures (in compounds 1, 2, and 5 with no applied DC field). The magnetization of compounds 1–6 relaxes through Orbach and direct mechanisms when a DC field is applied and through an Orbach and/or quantum tunneling mechanism when no DC field is applied. |
format | Online Article Text |
id | pubmed-10389752 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-103897522023-08-01 The Versatility of Ethylene Glycol to Tune the Dimensionality and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion Magnets Benmansour, Samia Pintado-Zaldo, Cristina Martínez-Ponce, Javier Hernández-Paredes, Antonio Valero-Martínez, Antonio Gómez-Benmansour, Miriam Gómez-García, Carlos J. Cryst Growth Des [Image: see text] We exploit the high versatility of the solvent ethylene glycol (eg = CH(2)OH-CH(2)OH) acting as a ligand with three different coordination modes: terminal (κO), chelate (κ(2)O,O′), and bridge (1κO,2κO′) to prepare a novel family of six different coordination polymers with Dy(III) and three different anilato ligands (3,6-disubstituted-2,5-dihydroxy-1,4-benzoquinone dianion = C(6)O(4)X(2)(2–), with X = H, Cl, and Br). With the X = H derivative (dhbq(2–)), we have prepared [Dy(2)(dhbq)(3)(eg)(2)(μ-eg)]·4eg·2H(2)O (1), a 3D diamond-like network with a chelate and bridging eg molecules. With the X = Cl derivative (chloranilato), we have prepared [Dy(2)(C(6)O(4)Cl(2))(3)(eg)(4)]·2eg·H(2)O (2) and [Dy(2)(C(6)O(4)Cl(2))(3)(μ-eg)(H(2)O)(4)]·2eg·7H(2)O (3). Compound 2 has a 2D (6,3)-gon brick-wall lattice and contains a chelate and a terminal eg molecule. Compound 3 has a 3D diamond-like topology as 1, although now the chelate eg has been replaced by two water molecules. Finally, with the X = Br derivative (bromanilato), we have obtained [Dy(2)(C(6)O(4)Br(2))(3)(eg)(2)(CH(3)OH)(2)]·2eg·4CH(3)OH (4), [Dy(2)(C(6)O(4)Br(2))(3)(eg)(4)]·4eg (5), and [Dy(2)(C(6)O(4)Br(2))(3)(eg)(3)(H(2)O)]·2eg·H(2)O (6). Compound 4 has a 2D (6,3)-gon herringbone topology and contains a chelate eg and a MeOH molecule. Compounds 5 and 6 have a 2D (6,3)-gon brick-wall topology with a chelate and a terminal eg molecules (in 5 and in one of the two independent Dy centers of 6). The other Dy center in 6 has a chelate eg and a water molecule. All the compounds show slow relaxation of the magnetization at low temperatures (in compounds 1, 2, and 5 with no applied DC field). The magnetization of compounds 1–6 relaxes through Orbach and direct mechanisms when a DC field is applied and through an Orbach and/or quantum tunneling mechanism when no DC field is applied. American Chemical Society 2023-01-17 /pmc/articles/PMC10389752/ /pubmed/37529082 http://dx.doi.org/10.1021/acs.cgd.2c01409 Text en © 2023 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Benmansour, Samia Pintado-Zaldo, Cristina Martínez-Ponce, Javier Hernández-Paredes, Antonio Valero-Martínez, Antonio Gómez-Benmansour, Miriam Gómez-García, Carlos J. The Versatility of Ethylene Glycol to Tune the Dimensionality and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion Magnets |
title | The Versatility
of Ethylene Glycol to Tune the Dimensionality
and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion
Magnets |
title_full | The Versatility
of Ethylene Glycol to Tune the Dimensionality
and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion
Magnets |
title_fullStr | The Versatility
of Ethylene Glycol to Tune the Dimensionality
and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion
Magnets |
title_full_unstemmed | The Versatility
of Ethylene Glycol to Tune the Dimensionality
and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion
Magnets |
title_short | The Versatility
of Ethylene Glycol to Tune the Dimensionality
and Magnetic Properties in Dy(III)-Anilato-Based Single-Ion
Magnets |
title_sort | versatility
of ethylene glycol to tune the dimensionality
and magnetic properties in dy(iii)-anilato-based single-ion
magnets |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10389752/ https://www.ncbi.nlm.nih.gov/pubmed/37529082 http://dx.doi.org/10.1021/acs.cgd.2c01409 |
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