Article (Scientific journals)
Tuning the Magnetic Anisotropy of Lanthanides on a Metal Substrate by Metal–Organic Coordination
Parreiras, S.O.; Moreno, D.; Cirera, B. et al.
2021In Small, 17 (35), p. 2102753
Peer Reviewed verified by ORBi
 

Files


Full Text
Small-2021-17-2102753.pdf
Publisher postprint (1.86 MB) Creative Commons License - Attribution, Non-Commercial
Download

All documents in ORBilu are protected by a user license.

Send to



Details



Keywords :
metal organic frameworks; metal-organic frameworks; lanthanides; lanthanide complexes; lanthanide; dysprosium; x-ray magnetic circular dichroism (XMCD); x-ray magnetic circular dichroism; XMCD; scanning tunneling microscopy; STM; ultra-high vacuum; ultra high vacuum; surface science; nanotechnology; 2d materials; self assembly; magnetism; magnetic materials; density functional theory
Abstract :
[en] Taming the magnetic anisotropy of lanthanides through coordination environments is crucial to take advantage of the lanthanides properties in thermally robust nanomaterials. In this work, the electronic and magnetic properties of Dy-carboxylate metal–organic networks on Cu(111) based on an eightfold coordination between Dy and ditopic linkers are inspected. This surface science study based on scanning probe microscopy and X-ray magnetic circular dichroism, complemented with density functional theory and multiplet calculations, reveals that the magnetic anisotropy landscape of the system is complex. Surface-supported metal–organic coordination is able to induce a change in the orientation of the easy magnetization axis of the Dy coordinative centers as compared to isolated Dy atoms and Dy clusters, and significantly increases the magnetic anisotropy. Surprisingly, Dy atoms coordinated in the metallosupramolecular networks display a nearly in-plane easy magnetization axis despite the out-of-plane symmetry axis of the coordinative molecular lattice. Multiplet calculations highlight the decisive role of the metal–organic coordination, revealing that the tilted orientation is the result of a very delicate balance between the interaction of Dy with O atoms and the precise geometry of the crystal field. This study opens new avenues to tailor the magnetic anisotropy and magnetic moments of lanthanide elements on surfaces.
Disciplines :
Physics
Author, co-author :
Parreiras, S.O.
Moreno, D.
Cirera, B.
Valbuena, M.A.
Urgel, J.I.
Paradinas, M.
PANIGHEL, Mirco  ;  CNR - Istituto Officina dei Materiali (IOM), Trieste, Laboratorio TASC, Strada Statale 14, km 163.5, 34149 Basovizza, Italy ; Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and BIST, Campus UAB, Barcelona 08193, Spain
Ajejas, F.
Niño, M.A.
Gallego, J.M.
Valvidares, M.
Gargiani, P.
Kuch, W.
MARTÍNEZ, J.I.
Mugarza, A.
Camarero, J.
Miranda, R.
Perna, P.
Écija, D.
More authors (9 more) Less
External co-authors :
yes
Language :
English
Title :
Tuning the Magnetic Anisotropy of Lanthanides on a Metal Substrate by Metal–Organic Coordination
Publication date :
2021
Journal title :
Small
ISSN :
1613-6810
eISSN :
1613-6829
Volume :
17
Issue :
35
Pages :
2102753
Peer reviewed :
Peer Reviewed verified by ORBi
Focus Area :
Physics and Materials Science
Funding text :
This project has received funding from the European Research Council (ERC, grant 766555) and Marie Sklodowska-Curie Actions (MSCA, project 894924) under the European Union's Horizon 2020 research and innovation programme. This work has been financed by the Spanish Ministerio de Economía, Industria y Competitividad (projects FIS2016-78591-C3-1-R, RTI2018-097895-B-C42, MAT2016-78293-C6-2-R, MAT2017-85089-C2-1-R, and PID2019-107338RB-C65); the Comunidad de Madrid (Projects S2013/MIT-2850, P2018/NMT4321, and S2018/NMT-4367); the European Regional Development Fund (ERDF) under the program Interreg V-A España-Francia-Andorra (Contract No. EFA 194/16 TNSI); and “Severo Ochoa” Programme for Centres of Excellence in R&D (grants SEV-2016-0686, and SEV-2017-0706).
Available on ORBilu :
since 01 August 2024

Statistics


Number of views
18 (2 by Unilu)
Number of downloads
14 (1 by Unilu)

Scopus citations®
 
15
Scopus citations®
without self-citations
7
OpenCitations
 
8
OpenAlex citations
 
15

Bibliography


Similar publications



Contact ORBilu