4.8 Article

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

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 138, 期 8, 页码 2829-2837

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jacs.5b13584

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资金

  1. 973 Project [2014CB845602, 2012CB821704]
  2. NSFC [91122032, 21371183, 91422302]
  3. NSF of Guangdong [S2013020013002]
  4. Program for Changjiang Scholars and Innovative Research Team of the University of China
  5. K.U. Leuven

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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)]Cl-3 center dot(Cy3PO)center dot H2O center dot EtOH (1) and [Dy-(Cy3PO)(2)(H2O)(3)]Br-3 center dot 2(Cy3PO)center dot 2H(2)O center dot 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.

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