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Tunable electronic and magnetism of SrTiO3/BiFeO3 (001) superlattice: For electrochemical applications
Journal article   Peer reviewed

Tunable electronic and magnetism of SrTiO3/BiFeO3 (001) superlattice: For electrochemical applications

Qiang Xu, Kostiantyn Sopiha, Mushtaq Sobhan, Franklin Anariba, Khuong Phuong Ong, Jian Wei Zheng and Ping Wu
Applied physics letters, Vol.108(1), 011602
04/01/2016

Abstract

Physical Sciences Physics Physics, Applied Science & Technology
Practical strategy in tuning the conductivity and magnetism of SrTiO3/BiFeO3 (STO/BFO) (001) superlattice is investigated using the first-principles method based on density functional theory. Our calculated results show that both the conductivity and magnetism of this superlattice can be tuned via a control of its interface terminations. The STO layers maintain semiconducting, while the BFO layers demonstrate metallic character. Therefore, the conductivity of STO/BFO is controlled by the BFO layers. Furthermore, a magnetic STO/BFO (001) superlattice can be found in n-type TiO2/BiO interface but with heavy electron carriers. The thickness of BFO does not change the electronic structure and character of STO/BFO (001) superlattice. This study provides a fundamental understanding of the chemically turned conductivity and magnetism of BFO thin films, which may further advance electrochemical applications like magnetic-field aided chemical gas sensing, solar cells, and photo-catalytic chemical reactions. (C) 2016 AIP Publishing LLC.

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