Magneto-thermal properties and slow magnetic relaxation in Mn(ii)Ln(iii) complexes: influence of magnetic coupling on the magneto-caloric effect

DALTON TRANSACTIONS(2022)

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摘要
A family of Mn(ii)Ln(iii) dinuclear and tetranuclear complexes (Ln = Gd and Dy) has been prepared from the compartmental ligands N,N '-dimethyl-N,N '-bis(2-hydroxy-3-formyl-5-bromobenzyl)ethylenediamine (H2L1) and N,N ',N ''-trimethyl-N,N ''-bis(2-hydroxy-3-methoxy-5-methylbenzyl)diethylenetriamine (H2L2). The Mn(ii)Gd(iii) complexes exhibit antiferromagnetic interactions between Mn(ii) and Gd(iii) ions in most cases, which are supported by Density Functional Theory (DFT) calculations. Experimental magneto-structural correlations carried out for the reported complexes and other related complexes found in bibliography show that the highest ferromagnetic coupling constants are observed in di-mu-phenoxido bridged complexes, which is due to the planarity of the Mn-(mu-O)(2)-Gd bridging fragment and to the high Mn-O-Gd angles. The effect of these angles has been studied by DFT calculations performed on a di-mu-phenoxido doubly bridged model. The magneto-thermal properties of the Mn(ii)Gd(iii) based complexes have also been measured, concluding that the magnitude of the Magneto-Caloric Effect (MCE) is due to the strength rather than to the nature of the magnetic coupling. Moreover, when two Mn(ii)Gd(iii) dinuclear units are connected by two carbonato-bridging ligands the MCE is enhanced, obtaining a maximum magnetic entropy change of 36.4 Jkg(-1) K-1 at Delta B = 7 T and T = 2.2 K. On the other hand, one of the dinuclear Mn(ii)Dy(iii) complexes displays Single-Molecule Magnet (SMM) behaviour with an energy barrier of 14.8 K under an applied external field of 1000 Oe.
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关键词
magnetic relaxation,magnetic coupling,mn<scp>ii</scp>ln<scp>iii</scp>,magneto-thermal,magneto-caloric
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