Magnetic properties of coordination clusters with Mn-4 and Co-4 antiferromagnetic cores

Autor(en): Achilli, Simona
Besson, Claire
He, Xu
Ordejon, Pablo
Meyer, Carola 
Zanolli, Zeila
Stichwörter: Chemistry; Chemistry, Physical; COBALT(II); COMPLEXES; DFT; EXCHANGE; GAS; Physics; Physics, Atomic, Molecular & Chemical
Erscheinungsdatum: 2022
Herausgeber: ROYAL SOC CHEMISTRY
Journal: PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volumen: 24
Ausgabe: 6
Startseite: 3780
Seitenende: 3787
Zusammenfassung: 
We present a joint experimental and theoretical characterization of the magnetic properties of coordination clusters with an antiferromagnetic core of four magnetic ions. Two different compounds are analyzed, with Co and Mn ions in the core. While both molecules are antiferromagnetic, they display different sensitivities to external magnetic field, according to the different atomic magnetic moments and strength of the intra-molecular magnetic couplings. In particular, the dependence of the magnetization versus field of the two molecules switches with temperature: at low temperature the magnetization is smaller in Mn-4 than in Co-4, while the opposite happens at high temperature. Through a detailed analysis of the electronic and magnetic properties of the two compounds we identify a stronger magnetic interaction between the magnetic ions in Mn-4 with respect to Co-4. Moreover Co-4 displays not negligible spin-orbit related effects that could affect the spin lifetime in future antiferromagnetic spintronic applications. We highlight the necessity to account for these spin-orbit effects together with electronic correlation effects for a reliable description of these compounds.
ISSN: 1463-9076
DOI: 10.1039/d1cp03904k

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