Issue 16, 2020

Field-induced slow magnetic relaxation and luminescence thermometry in a mononuclear ytterbium complex

Abstract

The mononuclear complex [Yb(H3L1,1,4)]·2MeOH (1·2MeOH), with a new heptadentate N4O3 ligand, was isolated and structurally characterised. The opto-magnetic properties of 1·2MeOH were investigated, showing that this complex is a bifunctional compound. Accordingly, 1·2MeOH reveals two coexisting functionalities: field-induced single molecule magnet behaviour, and Yb3+-centred NIR fluorescence dependent on temperature (25–300 K). The magnetic relaxation in this pentagonal bipyramidal complex does not seem to be of the Orbach type, and this is supported by the discrepancy between the anisotropic energy barrier found by fitting the magnetic data to an Orbach model and by spectroscopic studies. Ab initio calculations further validate the magnetic relaxation mechanisms and spectroscopic results.

Graphical abstract: Field-induced slow magnetic relaxation and luminescence thermometry in a mononuclear ytterbium complex

Supplementary files

Article information

Article type
Research Article
Submitted
01 Jun 2020
Accepted
10 Jul 2020
First published
14 Jul 2020

Inorg. Chem. Front., 2020,7, 3019-3029

Field-induced slow magnetic relaxation and luminescence thermometry in a mononuclear ytterbium complex

M. Fondo, J. Corredoira-Vázquez, A. M. García-Deibe, J. Sanmartín-Matalobos, M. Amoza, A. M. P. Botas, R. A. S. Ferreira, L. D. Carlos and E. Colacio, Inorg. Chem. Front., 2020, 7, 3019 DOI: 10.1039/D0QI00637H

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