Magnetic anisotropy of the antiferromagnetic iron(III) rings [LiFe6(OMe)12(dbm)6]+ (I) and [NaFe6(OMe)12(pmdbm)6]+ (II), where Hdbm=1,3-diphenyl-1,3-propanedione and Hpmdbm=1,3-di(4-methoxyphenyl)-1,3-propanedione, was investigated. Staircase structures were obsd. on the torque curves of I-PF6 and II-ClO4 and were assigned to spin-level crossings from the spin ground state. The host-guest interactions responsible for the large difference in magnetic coupling also yield a dramatic difference in the magnetic anisotropies.
Tuning of Magnetic Anisotropy in Hexairon(III) Rings by Host–Guest Interactions. An Investigation by High–Field Torque Magnetometry / Cornia, Andrea; Affronte, Marco; A. G. M., Jansen; G. L., Abbati; D., Gatteschi. - In: ANGEWANDTE CHEMIE. INTERNATIONAL EDITION. - ISSN 1433-7851. - STAMPA. - 38:(1999), pp. 2264-2266. [10.1002/(SICI)1521-3773(19990802)38:15<2264::AID-ANIE2264>3.0.CO;2-L]
Tuning of Magnetic Anisotropy in Hexairon(III) Rings by Host–Guest Interactions. An Investigation by High–Field Torque Magnetometry
CORNIA, Andrea;AFFRONTE, Marco;
1999
Abstract
Magnetic anisotropy of the antiferromagnetic iron(III) rings [LiFe6(OMe)12(dbm)6]+ (I) and [NaFe6(OMe)12(pmdbm)6]+ (II), where Hdbm=1,3-diphenyl-1,3-propanedione and Hpmdbm=1,3-di(4-methoxyphenyl)-1,3-propanedione, was investigated. Staircase structures were obsd. on the torque curves of I-PF6 and II-ClO4 and were assigned to spin-level crossings from the spin ground state. The host-guest interactions responsible for the large difference in magnetic coupling also yield a dramatic difference in the magnetic anisotropies.File | Dimensione | Formato | |
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