Please use this identifier to cite or link to this item: https://doi.org/10.1038/NCHEM.1707
Title: Magnetic relaxation pathways in lanthanide single-molecule magnets
Authors: Blagg, Robin J
Ungur, Liviu 
Tuna, Floriana
Speak, James
Comar, Priyanka
Collison, David
Wernsdorfer, Wolfgang
McInnes, Eric JL
Chibotaru, Liviu F
Winpenny, Richard EP
Keywords: Science & Technology
Physical Sciences
Chemistry, Multidisciplinary
Chemistry
SPIN-LATTICE RELAXATION
ION MAGNETS
DYSPROSIUM TRIANGLES
ANISOTROPY
COMPLEXES
BEHAVIOR
EXCHANGE
HYSTERESIS
SYMMETRY
BLOCKING
Issue Date: 1-Aug-2013
Publisher: NATURE PUBLISHING GROUP
Citation: Blagg, Robin J, Ungur, Liviu, Tuna, Floriana, Speak, James, Comar, Priyanka, Collison, David, Wernsdorfer, Wolfgang, McInnes, Eric JL, Chibotaru, Liviu F, Winpenny, Richard EP (2013-08-01). Magnetic relaxation pathways in lanthanide single-molecule magnets. NATURE CHEMISTRY 5 (8) : 673-678. ScholarBank@NUS Repository. https://doi.org/10.1038/NCHEM.1707
Abstract: Single-molecule magnets are compounds that exhibit magnetic bistability caused by an energy barrier for the reversal of magnetization (relaxation). Lanthanide compounds are proving promising as single-molecule magnets: recent studies show that terbium phthalocyanine complexes possess large energy barriers, and dysprosium and terbium complexes bridged by an N 2 3- radical ligand exhibit magnetic hysteresis up to 13 K. Magnetic relaxation is typically controlled by single-ion factors rather than magnetic exchange (whether one or more 4f ions are present) and proceeds through thermal relaxation of the lowest excited states. Here we report polylanthanide alkoxide cage complexes, and their doped diamagnetic yttrium analogues, in which competing relaxation pathways are observed and relaxation through the first excited state can be quenched. This leads to energy barriers for relaxation of magnetization that exceed 800 K. We investigated the factors at the lanthanide sites that govern this behaviour. © 2013 Macmillan Publishers Limited. All rights reserved.
Source Title: NATURE CHEMISTRY
URI: https://scholarbank.nus.edu.sg/handle/10635/228843
ISSN: 17554330
17554349
DOI: 10.1038/NCHEM.1707
Appears in Collections:Staff Publications
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