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Lanthanide metal-organic network featuring strong perpendicular magnetic anisotropy

Authors :
0000-0001-9009-1994
0000-0002-4499-2561
0000-0003-2910-7429
0000-0002-9338-7077
0000-0002-0632-1636
0000-0001-7608-2979
0000-0003-1024-6779
0000-0002-0585-5636
0000-0003-1716-0126
0000-0002-2086-8603
0000-0002-8661-8295
Parreiras, Sofia O
Moreno, Daniel
Mathialagan, Shanmugasibi K
Muñiz-Cano, Beatriz
Martín-Fuentes, Cristina
Tenorio, María
Černa, Lenka
Urgel, José I
Lauwaet, Koen
Valvidares, Manuel
Valbuena, Miguel A
Gallego, José M.
Martínez, José I.
Gargiani, Pierluigi
Miranda, Rodolfo
Camarero, Julio
Écija, David
0000-0001-9009-1994
0000-0002-4499-2561
0000-0003-2910-7429
0000-0002-9338-7077
0000-0002-0632-1636
0000-0001-7608-2979
0000-0003-1024-6779
0000-0002-0585-5636
0000-0003-1716-0126
0000-0002-2086-8603
0000-0002-8661-8295
Parreiras, Sofia O
Moreno, Daniel
Mathialagan, Shanmugasibi K
Muñiz-Cano, Beatriz
Martín-Fuentes, Cristina
Tenorio, María
Černa, Lenka
Urgel, José I
Lauwaet, Koen
Valvidares, Manuel
Valbuena, Miguel A
Gallego, José M.
Martínez, José I.
Gargiani, Pierluigi
Miranda, Rodolfo
Camarero, Julio
Écija, David
Publication Year :
2023

Abstract

The coordination of lanthanides atoms in two-dimensional surface-confined metal-organic networks is a promising path to achieve an ordered array of single atom magnets. These networks are highly versatile with plenty of combinations of molecular linkers and metallic atoms. Notably, with an appropriate choice of molecules and lanthanide atoms it should be feasible to tailor the orientation and intensity of the magnetic anisotropy. However, up to now only tilted and almost in-plane easy axis of magnetizations were reported in lanthanide-based architectures. Here we introduce an Er-directed two-dimensional metallosupramolecular network on Cu(111) featuring strong out-of-plane magnetic anisotropy. Our results will contribute to pave avenues for the use of lanthanides in potential applications in nanomagnetism and spintronics.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1431965143
Document Type :
Electronic Resource