2022Chemical ScienceOpen access

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

Ben Zhang, Zhijie Cheng, Yingying Wu, Lei Chen, Rong Jing, Xingwei Cai, Chunhui Jiang, Yi‐Quan Zhang, Aihua Yuan, Hui−Hui Cui, Zhao‐Yang Li

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Abstract

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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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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Available abstract

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.

Key concepts: Dodecahedron, Magnet, Ion, Ligand (biochemistry), Lanthanide, Materials science, Crystallography, Chemistry

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