2020-04-01T08:34:59Z
2020-04-01T08:34:59Z
2016-01-01
2020-04-01T08:35:00Z
Structural, spectroscopic and magnetic methods have been used to characterize the tris(carbene) borate compound PhB(MesIm)(3)Mn equivalent to N as a four-coordinate manganese(IV) complex with a low spin (S = 1/2) configuration. The slow relaxation of the magnetization in this complex, i.e. its single-molecule magnet (SMM) properties, is revealed under an applied dc field. Multireference quantum mechanical calculations indicate that this SMM behavior originates from an anisotropic ground doublet stabilized by spin-orbit coupling. Consistent theoretical and experiment data show that the resulting magnetization dynamics in this system is dominated by ground state quantum tunneling, while its temperature dependence is influenced by Raman relaxation.
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Anisotropia; Imants; Teoria quàntica; Anisotropy; Magnets; Quantum theory
Royal Society of Chemistry
Versió postprint del document publicat a: https://doi.org/10.1039/c6sc01469k
Chemical Science, 2016, vol. 7, num. 9, p. 6132-6140
https://doi.org/10.1039/c6sc01469k
(c) Ding, Mei et al., 2016