Issue 25, 2015

Slow magnetic relaxation in mononuclear seven-coordinate cobalt(ii) complexes with easy plane anisotropy

Abstract

Two mononuclear seven-coordinate cobalt(II) complexes [Co(L)3(NO3)2] (L = 4-tert-butylpyridine, 1; L = isoquinoline, 2) were prepared and structurally analyzed by single-crystal X-ray crystallography. The coordination spheres of 1 and 2 exhibit distorted pentagonal bipyramid geometry. Analysis of their direct-current magnetic data reveals the existence of easy plane anisotropy (D > 0) with a small transverse anisotropy (E), which was further confirmed by high-field electron paramagnetic resonance (HFEPR) spectroscopy. Field-induced slow magnetic relaxations were observed under the applied dc field in complexes 1 and 2 by alternating-current magnetic susceptibility measurements. Importantly, these complexes are new instances of mononuclear high-coordinate cobalt(II)-based single-molecule magnets.

Graphical abstract: Slow magnetic relaxation in mononuclear seven-coordinate cobalt(ii) complexes with easy plane anisotropy

Supplementary files

Article information

Article type
Paper
Submitted
24 Feb 2015
Accepted
10 May 2015
First published
13 May 2015

Dalton Trans., 2015,44, 11482-11490

Author version available

Slow magnetic relaxation in mononuclear seven-coordinate cobalt(II) complexes with easy plane anisotropy

L. Chen, S. Chen, Y. Sun, Y. Guo, L. Yu, X. Chen, Z. Wang, Z. W. Ouyang, Y. Song and Z. Xue, Dalton Trans., 2015, 44, 11482 DOI: 10.1039/C5DT00785B

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