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Oxygen-Vacancy-Induced Polar Behavior in (LaFeO3)(2)/(SrFeO3) Superlatticesopen access

Authors
Mishra, RohanKim, Young-MinSalafranca, JuanKim, Seong KeunChang, Seo HyoungBhattacharya, AnandFong, Dillon D.Pennycook, Stephen J.Pantelides, Sokrates T.Borisevich, Albina Y.
Issue Date
May-2014
Publisher
AMER CHEMICAL SOC
Keywords
Transition-metal oxides; multiferroics; polar oxides; DFT calculations; scanning transmission electron microscopy; oxygen vacancies
Citation
NANO LETTERS, v.14, no.5, pp 2694 - 2701
Pages
8
Journal Title
NANO LETTERS
Volume
14
Number
5
Start Page
2694
End Page
2701
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/56861
DOI
10.1021/nl500601d
ISSN
1530-6984
1530-6992
Abstract
Complex oxides displaying ferroelectric and/or multiferroic behavior are of high fundamental and applied interest. In this work, we show that it is possible to achieve polar order in a superlattice made up of two nonpolar oxides by means of oxygen vacancy ordering. Using scanning transmission electron microscopy imaging, we show the polar displacement of magnetic Fe ions in a superlattice of (LaFeO3)(2)/ (SrFeO3) grown on a SrTiO3 substrate. Using density functional theory calculations, we systematically study the effect of epitaxial strain, octahedral rotations, and surface terminations in the superlattice and find them to have a negligible effect on the antipolar displacements of the Fe ions lying in between SrO and LaO layers of the superlattice (i.e., within La0.3Sr0.5FeO3 unit cells). The introduction of oxygen vacancies, on the other hand, triggers a polar displacement of the Fe ions. We confirm this important result using electron energy loss spectroscopy, which shows partial oxygen vacancy ordering in the region where polar displacements are observed and an absence of vacancy ordering outside of that area.
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자연과학대학 (물리학과)
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