Verlagslink DOI: 10.1002/adma.202300200
Titel: Controlled electronic and magnetic landscape in self‐assembled complex oxide heterostructures
Sprache: Englisch
Autorenschaft: Park, Dae-Sung 
Rata, Aurora Diana 
Dahm, Rasmus Tindal 
Chu, Kanghyun 
Gan, Yulin 
Maznichenko, Igor 
Ostanin, Sergey 
Trier, Felix 
Baik, Hionsuck 
Choi, Woo Seok 
Choi, Chel‐Jong 
Kim, Young Heon 
Rees, Gregory J. 
Gíslason, Hafliði Pétur 
Buczek, Paweł  
Mertig, Ingrid 
Ionescu, Mihai Adrian 
Ernst, Arthur 
Dörr, Kathrin 
Muralt, Paul 
Pryds, Nini 
Schlagwörter: 2DEGs; functional oxides; magnetism; self-assembly; thin film growth
Erscheinungsdatum: 8-Mai-2023
Verlag: Wiley
Zeitschrift oder Schriftenreihe: Advanced materials 
Zeitschriftenband: 35
Zeitschriftenausgabe: 32
Zusammenfassung: 
Complex oxide heterointerfaces contain a rich playground of novel physical properties and functionalities, which give rise to emerging technologies. Among designing and controlling the functional properties of complex oxide film heterostructures, vertically aligned nanostructure (VAN) films using a self-assembling bottom-up deposition method presents great promise in terms of structural flexibility and property tunability. Here, the bottom-up self-assembly is extended to a new approach using a mixture containing a 2Dlayer-by-layer film growth, followed by a 3D VAN film growth. In this work, the two-phase nanocomposite thin films are based on LaAlO3:LaBO3, grown on a lattice-mismatched SrTiO3001 (001) single crystal. The 2D-to-3D transient structural assembly is primarily controlled by the composition ratio, leading to the coexistence of multiple interfacial properties, 2D electron gas, and magnetic anisotropy. This approach provides multidimensional film heterostructures which enrich the emergent phenomena for multifunctional applications.
URI: http://hdl.handle.net/20.500.12738/14296
ISSN: 1521-4095
Begutachtungsstatus: Diese Version hat ein Peer-Review-Verfahren durchlaufen (Peer Review)
Einrichtung: Fakultät Technik und Informatik 
Department Informations- und Elektrotechnik 
Dokumenttyp: Zeitschriftenbeitrag
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