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在五重锥形 Dy(III)单离子磁体中,20 K 时的对称支持磁阻塞。

Symmetry-Supported Magnetic Blocking at 20 K in Pentagonal Bipyramidal Dy(III) Single-Ion Magnets.

机构信息

Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry and Chemical Engineering, Sun Yat-Sen University , Guangzhou 510275, P. R. China.

Theory of Nanomaterials Group and INPAC-Institute of Nanoscale Physics and Chemistry, Katholieke, Universiteit Leuven , 3001 Leuven, Belgium.

出版信息

J Am Chem Soc. 2016 Mar 2;138(8):2829-37. doi: 10.1021/jacs.5b13584. Epub 2016 Feb 17.

Abstract

Single-molecule magnets (SMMs) that can be trapped in one of the bistable magnetic states separated by an energy barrier are among the most promising candidates for high-density information storage, quantum processing, and spintronics. To date, a considerable series of achievements have been made. However, the presence of fast quantum tunnelling of magnetization (QTM) in most SMMs, especially in single-ion magnets (SIMs), provides a rapid relaxation route and often sets up a limit for the relaxation time. Here, we pursue the pentagonal bipyramidal symmetry to suppress the QTM and present pentagonal bipyramidal Dy(III) SIMs [Dy(Cy3PO)2(H2O)5]Cl3·(Cy3PO)·H2O·EtOH (1) and [Dy(Cy3PO)2(H2O)5]Br3·2(Cy3PO)·2H2O·2EtOH (2), (Cy3PO = tricyclohexyl phosphine oxide). Magnetic characterizations reveal their fascinating SMM properties with high energy barriers as 472(7) K for 1 and 543(2) K for 2, along with a record magnetic hysteresis temperature up to 20 K for 2. These results, combined with the ab initio calculations, offer an illuminating insight into the vast possibility and potential of what the symmetry rules can achieve in molecular magnetism.

摘要

单分子磁体(SMMs)是指那些可以被困在由能垒隔开的两个稳定磁态之一的分子,它们是高密度信息存储、量子处理和自旋电子学等领域最有前途的候选者之一。迄今为止,已经取得了相当多的成就。然而,大多数 SMMs 中存在快速的磁化量子隧穿(QTM),尤其是在单离子磁体(SIMs)中,这提供了一种快速弛豫途径,并且常常为弛豫时间设定了限制。在这里,我们追求五重对称来抑制 QTM,并提出了五重对称的 Dy(III) SIMs [Dy(Cy3PO)2(H2O)5]Cl3·(Cy3PO)·H2O·EtOH(1)和[Dy(Cy3PO)2(H2O)5]Br3·2(Cy3PO)·2H2O·2EtOH(2),(Cy3PO = 三环己基膦氧化物)。磁性表征揭示了它们迷人的 SMM 性质,具有较高的能垒,1 的能垒为 472(7) K,2 的能垒为 543(2) K,同时 2 的磁滞温度高达 20 K,创下了纪录。这些结果与从头算计算相结合,为对称性规则在分子磁性中所能实现的巨大可能性和潜力提供了一个有启发性的见解。

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