Issue 21, 2022

Slow magnetic relaxation in a trigonal-planar mononuclear Fe(ii) complex

Abstract

Based on a β-diketiminate ligand, an iron(III) tetrahedral high-spin complex, [LFeIII(Cl)2] (1), and an iron(II) high-spin triangular planar complex, [LFeIICl] (2), have been synthesized and structurally characterized. Also, complex 1 can be considered as a precursor to produce 2via a reduction process, with a concomitant change in its magnetic anisotropy. Combined experiments and ab initio calculations support the observation of field-induced single-ion magnet (SIM) behaviour for 2 with an effective spin-reversal energy barrier of Ueff = 40.02 K, as a direct consequence of the large intrinsic magnetic anisotropy (easy axis) arising from out-of-state spin-orbit coupling in the trigonal planar FeII complex. Noteworthy butterfly hysteresis loops were observed from 2 up to 8 K, which represents the first case in Fe(II) complexes.

Graphical abstract: Slow magnetic relaxation in a trigonal-planar mononuclear Fe(ii) complex

Supplementary files

Article information

Article type
Paper
Submitted
24 Mar 2022
Accepted
26 Apr 2022
First published
26 Apr 2022

Dalton Trans., 2022,51, 8266-8272

Slow magnetic relaxation in a trigonal-planar mononuclear Fe(II) complex

Y. Li, J. Xi, J. Ferrando-Soria, Y. Zhang, W. Wang, Y. Song, Y. Guo, E. Pardo and X. Liu, Dalton Trans., 2022, 51, 8266 DOI: 10.1039/D2DT00899H

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