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CORDIS - Forschungsergebnisse der EU
CORDIS

Gated INTERfaces for FAST information processing

Leistungen

Optimal spin conducting metals/MOL bilayers

Detailed protocols for fabrication of optimal spin conducting metalsMOL bilayers

Selection of hybrid molecular interfaces

Selection of a set of hybrid molecular interfaces to be used in WP3WP4WP5 and to be modeled in WP6

Optimal heavy metals/MOL bilayers

Detailed protocols for fabrication of optimal heavy metals MOL bilayers

Database containing technologically relevant interfaces parameters

Database containing technologically relevant hybrid interfaces and the most useful parameters hybridization strength energy scale of the hybridizationrelated modification of materials parameters magnetic anisotropy spinorbit coupling

Control of spin orbit scattering

Control over the spin orbit scattering and SOC band engineering of ultrathin metals

Database of hybrid interface parameters

Database containing relevant hybrid interface parameters hybridization strength magnetic anisotropy charge transfer energy etc computed from firstprinciples

Optimal FM/MOL interfaces

Detailed protocols for fabrication of optimal FMMOL interfaced bilayer

Web site and Socials

Web site launch Press Release Socialscontinuously updated Twitter Facebook LinkedIn Instagram updated every 3 months

Veröffentlichungen

Theoretical perspective on the modification of the magnetocrystallineanisotropy at molecule-cobalt interfaces

Autoren: Anita Halder, Sumanta Bhandary, David D. O'Regan, Stefano Sanvito, and Andrea Droghetti
Veröffentlicht in: PHYSICAL REVIEW MATERIALS, Ausgabe 7, 2023, Seite(n) 064409, ISSN 2475-9953
Herausgeber: American Physical Society
DOI: 10.1103/physrevmaterials.7.064409

Spinterface Effects in Hybrid La0.7Sr0.3MnO3/SrTiO3/C60/Co Magnetic Tunnel Junctions

Autoren: Ilaria Bergenti, Takeshi Kamiya, Dongzhe Li, Alberto Riminucci, Patrizio Graziosi, Donald A. MacLaren, Rajib K. Rakshit, Manju Singh, Mattia Benini, Hirokazu Tada, Alexander Smogunov, and Valentin A. Dediu
Veröffentlicht in: ACS Applied Electronic Materials, 2022, ISSN 2637-6113
Herausgeber: American Chemical Society
DOI: 10.1021/acsaelm.2c00300

Long-Term Degradation Mechanisms in Application-Implemented Radical Thin Films

Autoren: E. M Nowik-Boltyk, T, Junghoefer, M. Glaser, E. Giangrisostomi, R. Ovsyannikov, S. Zhang, C. Shu, A. Rajca, A. Calzolari, M. B. Casu
Veröffentlicht in: ACS Applied Material Interface (open access), Ausgabe volume15, number 25, 2023, Seite(n) 30935–30943, ISSN 1944-8252
Herausgeber: American Chemical Society
DOI: 10.1021/acsami.3c02057

Enhancing Electron Correlation at a 3D Ferromagnetic Surface

Autoren: David Maximilian Janas, Andrea Droghetti, Stefano Ponzoni, Iulia Cojocariu, Matteo Jugovac, Vitaliy Feyer, Miloš M. Radonjić, Ivan Rungger, Liviu Chioncel, Giovanni Zamborlini, Mirko Cinchetti
Veröffentlicht in: Advanced Materials, 2022, ISSN 0935-9648
Herausgeber: United Nations Industrial Developement Organization
DOI: 10.1002/adma.202205698

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