NUSNNI-NanoCore, National University of Singapore, 5A Engineering Drive 1, Singapore, 117411, Singapore.
Adv Mater. 2018 Nov;30(47):e1802439. doi: 10.1002/adma.201802439. Epub 2018 Aug 21.
Complex oxide interfaces have mesmerized the scientific community in the last decade due to the possibility of creating tunable novel multifunctionalities, which are possible owing to the strong interaction among charge, spin, orbital, and structural degrees of freedom. Artificial interfacial modifications, which include defects, formal polarization, structural symmetry breaking, and interlayer interaction, have led to novel properties in various complex oxide heterostructures. These emergent phenomena not only serve as a platform for investigating strong electronic correlations in low-dimensional systems but also provide potentials for exploring next-generation electronic devices with high functionality. Herein, some recently developed strategies in engineering functional oxide interfaces and their emergent properties are reviewed.
在过去的十年中,由于能够创造可调谐的新型多功能性,氧化物界面引起了科学界的关注,这是由于电荷、自旋、轨道和结构自由度之间的强烈相互作用所致。人工界面修饰,包括缺陷、形式极化、结构对称性破坏和层间相互作用,导致了各种复杂氧化物异质结构中的新特性。这些新兴现象不仅为研究低维系统中的强电子相关提供了一个平台,而且为探索具有高功能的下一代电子设备提供了潜力。本文综述了一些最近开发的功能氧化物界面工程策略及其新兴特性。