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Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets

The synthesis of air-stable, high-performance single-molecule magnets (SMMs) is of great significance for their practical applications. Indeed, Ln complexes with high coordination numbers are satisfactorily air stable. However, such geometries easily produce spherical ligand fields that minimize mag...

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Autores principales: Zhang, Ben, Cheng, Zhijie, Wu, Yingying, Chen, Lei, Jing, Rong, Cai, Xingwei, Jiang, Chunhui, Zhang, Yi-Quan, Yuan, Aihua, Cui, Hui-Hui, Li, Zhao-Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9667924/
https://www.ncbi.nlm.nih.gov/pubmed/36425507
http://dx.doi.org/10.1039/d2sc03182e
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author Zhang, Ben
Cheng, Zhijie
Wu, Yingying
Chen, Lei
Jing, Rong
Cai, Xingwei
Jiang, Chunhui
Zhang, Yi-Quan
Yuan, Aihua
Cui, Hui-Hui
Li, Zhao-Yang
author_facet Zhang, Ben
Cheng, Zhijie
Wu, Yingying
Chen, Lei
Jing, Rong
Cai, Xingwei
Jiang, Chunhui
Zhang, Yi-Quan
Yuan, Aihua
Cui, Hui-Hui
Li, Zhao-Yang
author_sort Zhang, Ben
collection PubMed
description The synthesis of air-stable, high-performance single-molecule magnets (SMMs) is of great significance for their practical applications. Indeed, Ln complexes with high coordination numbers are satisfactorily air stable. However, such geometries easily produce spherical ligand fields that minimize magnetic anisotropy. Herein, we report the preparation of three air-stable eight-coordinate mononuclear Dy(iii) complexes with triangular dodecahedral geometries, namely, [Dy(BPA-TPA)Cl](BPh(4))(2) (1) and [Dy(BPA-TPA)(X)](BPh(4))(2)·nCH(2)Cl(2) (X = CH(3)O(−) and n = 1 for 2; L = PhO(−) and n = 2 for 3), using a novel design concept in which the bulky heptadentate [2,6-bis[bis(2-pyridylmethyl)amino]methyl]-pyridine (BPA-TPA) ligand enwraps the Dy(iii) ion through weak coordinate bonds leaving only a small vacancy for a negatively charged (Cl(−)), methoxy (CH(3)O(−)) or phenoxy (PhO(−)) moiety to occupy. Magnetic measurements reveal that the single-molecule magnet (SMM) property of complex 1 is actually poor, as there is almost no energy barrier. However, complexes 2 and 3 exhibit fascinating SMM behavior with high energy barriers (U(eff) = 686 K for 2; 469 K for 3) and magnetic hysteresis temperatures up to 8 K, which is attributed to the pseudolinear ligand field generated by one strong, highly electrostatic Dy–O bond. Ab initio calculations were used to show the apparent difference in the magnetic dynamics of the three complexes, confirming that the pseudo-mono-axial ligand field has an important effect on high-performance SMMs compared with the local symmetry. This study not only presents the highest energy barrier for a triangular dodecahedral SMM but also highlights the enormous potential of the pseudolinear Dy–L ligand field for constructing promising SMMs.
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spelling pubmed-96679242022-11-23 Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets Zhang, Ben Cheng, Zhijie Wu, Yingying Chen, Lei Jing, Rong Cai, Xingwei Jiang, Chunhui Zhang, Yi-Quan Yuan, Aihua Cui, Hui-Hui Li, Zhao-Yang Chem Sci Chemistry The synthesis of air-stable, high-performance single-molecule magnets (SMMs) is of great significance for their practical applications. Indeed, Ln complexes with high coordination numbers are satisfactorily air stable. However, such geometries easily produce spherical ligand fields that minimize magnetic anisotropy. Herein, we report the preparation of three air-stable eight-coordinate mononuclear Dy(iii) complexes with triangular dodecahedral geometries, namely, [Dy(BPA-TPA)Cl](BPh(4))(2) (1) and [Dy(BPA-TPA)(X)](BPh(4))(2)·nCH(2)Cl(2) (X = CH(3)O(−) and n = 1 for 2; L = PhO(−) and n = 2 for 3), using a novel design concept in which the bulky heptadentate [2,6-bis[bis(2-pyridylmethyl)amino]methyl]-pyridine (BPA-TPA) ligand enwraps the Dy(iii) ion through weak coordinate bonds leaving only a small vacancy for a negatively charged (Cl(−)), methoxy (CH(3)O(−)) or phenoxy (PhO(−)) moiety to occupy. Magnetic measurements reveal that the single-molecule magnet (SMM) property of complex 1 is actually poor, as there is almost no energy barrier. However, complexes 2 and 3 exhibit fascinating SMM behavior with high energy barriers (U(eff) = 686 K for 2; 469 K for 3) and magnetic hysteresis temperatures up to 8 K, which is attributed to the pseudolinear ligand field generated by one strong, highly electrostatic Dy–O bond. Ab initio calculations were used to show the apparent difference in the magnetic dynamics of the three complexes, confirming that the pseudo-mono-axial ligand field has an important effect on high-performance SMMs compared with the local symmetry. This study not only presents the highest energy barrier for a triangular dodecahedral SMM but also highlights the enormous potential of the pseudolinear Dy–L ligand field for constructing promising SMMs. The Royal Society of Chemistry 2022-10-31 /pmc/articles/PMC9667924/ /pubmed/36425507 http://dx.doi.org/10.1039/d2sc03182e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Zhang, Ben
Cheng, Zhijie
Wu, Yingying
Chen, Lei
Jing, Rong
Cai, Xingwei
Jiang, Chunhui
Zhang, Yi-Quan
Yuan, Aihua
Cui, Hui-Hui
Li, Zhao-Yang
Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets
title Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets
title_full Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets
title_fullStr Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets
title_full_unstemmed Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets
title_short Pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral Dy(iii) single-ion magnets
title_sort pseudo-mono-axial ligand fields that support high energy barriers in triangular dodecahedral dy(iii) single-ion magnets
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9667924/
https://www.ncbi.nlm.nih.gov/pubmed/36425507
http://dx.doi.org/10.1039/d2sc03182e
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