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 Jon, Gíslason Hafliði Pétur, Buczek Paweł Adam, Mertig Ingrid, Ionescu Mihai Adrian, Ernst Arthur, Dörr Kathrin, Muralt Paul, Pryds Nini
Institute of Materials, Swiss Federal Institute of Technology-EPFL, Lausanne, 1015, Switzerland.
Department of Energy Conversion and Storage, Technical University of Denmark, Kgs Lyngby, DK-2800, Denmark.
Adv Mater. 2023 Aug;35(32):e2300200. doi: 10.1002/adma.202300200. Epub 2023 Jun 29.
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 LaAlO :LaBO , grown on a lattice-mismatched SrTiO (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.
复杂氧化物异质界面蕴含着丰富多样的新颖物理特性和功能,催生出新兴技术。在设计和控制复杂氧化物薄膜异质结构的功能特性方面,采用自下而上自组装沉积法的垂直对齐纳米结构(VAN)薄膜在结构灵活性和性能可调性方面展现出巨大潜力。在此,自下而上的自组装被扩展为一种新方法,即先进行二维逐层薄膜生长,随后进行三维VAN薄膜生长。在这项工作中,两相纳米复合薄膜基于LaAlO₃:LaBO₃,生长在晶格失配的SrTiO₃(001)单晶上。二维到三维的瞬态结构组装主要由组成比控制,导致多种界面特性、二维电子气和磁各向异性共存。这种方法提供了多维薄膜异质结构,丰富了多功能应用中的新兴现象。