Slow Magnetic Relaxation in a High-Spin Iron(II) Complex

Slow magnetic relaxation is observed for [(tpaMes)Fe]−, a trigonal pyramidal complex of high-spin iron(II), providing the first example of a mononuclear transition metal complex that behaves as a single-molecule magnet. Dc magnetic susceptibility and magnetization measurements reveal a strong uniaxi...

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Veröffentlicht in:Journal of the American Chemical Society 2010-02, Vol.132 (4), p.1224-1225
Hauptverfasser: Freedman, Danna E, Harman, W. Hill, Harris, T. David, Long, Gary J, Chang, Christopher J, Long, Jeffrey R
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Sprache:eng
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Zusammenfassung:Slow magnetic relaxation is observed for [(tpaMes)Fe]−, a trigonal pyramidal complex of high-spin iron(II), providing the first example of a mononuclear transition metal complex that behaves as a single-molecule magnet. Dc magnetic susceptibility and magnetization measurements reveal a strong uniaxial magnetic anisotropy (D = −39.6 cm−1) acting on the S = 2 ground state of the molecule. Ac magnetic susceptibility measurements indicate the absence of slow relaxation under zero applied dc field as a result of quantum tunneling of the magnetization. Application of a 1500 Oe dc field initiates slow magnetic relaxation, which follows a thermally activated tunneling mechanism at high temperature to give an effective spin-reversal barrier of U eff = 42 cm−1 and follows a temperature-independent tunneling mechanism at low temperature. In addition, the magnetic relaxation time shows a pronounced dc-field dependence, with a maximum occurring at ∼1500 Oe.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja909560d