articleTop 1% cited
Switching the anisotropy barrier of a single-ion magnet by symmetry change from quasi-D5h to quasi-Oh
Chemical Science · 2013 · Vol. 4(8) · pp. 3310–3310
Jun‐Liang Liu(Sun Yat-sen University)Yan‐Cong Chen(Sun Yat-sen University)Yan-Zhen Zheng(Xi'an Jiaotong University)Wei‐Quan Lin(Sun Yat-sen University)Liviu Ungur(KU Leuven)Wolfgang Wernsdorfer(Centre National de la Recherche Scientifique)Liviu F. Chibotaru✉(KU Leuven)Ming‐Liang Tong✉(Sun Yat-sen University)
Abstract
A reversible single-crystal-to-single-crystal transformation is used to dramatically change the relaxation behavior of a single-ion magnet. The coordination geometry of the DyIII site of a [Zn–Dy–Zn] complex changes from pentagonal–bipyramid (quasi-D5h) to octahedron (quasi-Oh), inducing an energy barrier change from 305 cm−1 (439 K) to a negligible value, respectively. Ab initio calculations reveal that the ideal D5h–DyIII is of perfect axiality with a substantial energy barrier in accordance with the experimental result.
Magnetism in coordination complexesLanthanide and Transition Metal ComplexesAdvanced NMR Techniques and ApplicationsIonOctahedronMagnetSingle-molecule magnetCrystallographyAb initioRelaxation (psychology)AnisotropyMaterials scienceSingle crystal
Funding
- Fonds Wetenschappelijk Onderzoek
- KU Leuven
- Vlaamse regering
Citations
520
FWCI
17.25
field-weighted impact
References
50
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100%
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References
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