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Strain-Inhibited Electromigration of Oxygen Vacancies in LaCoO3

  • Liang Zhu
  • , Shulin Chen
  • , Hui Zhang
  • , Jine Zhang
  • , Yuanwei Sun
  • , Xiaomin Li
  • , Zhi Xu
  • , Lifen Wang*
  • , Jirong Sun
  • , Peng Gao
  • , Wenlong Wang
  • , Xuedong Bai
  • *此作品的通讯作者
  • CAS - Institute of Physics
  • University of Chinese Academy of Sciences
  • Peking University
  • Harbin Institute of Technology
  • Songshan Lake Materials Laboratory
  • Collaborative Innovation Center of Quantum Matter

科研成果: 期刊稿件文章同行评审

摘要

The oxygen vacancy profile in LaCoO3 exhibits rich phases with distinct structures, symmetries, and magnetic properties. Exploration of the lattice degree of freedom of LaCoO3 in the transition between these different structural phases may provide a route to enable new functionality in oxide materials with potential applications. To date, the oxygen vacancy profile transition in LaCoO3 has mainly been induced by transition-metal doping or thermal treatment. Epitaxial strain was proposed to compete with the lattice degree of freedom but has not yet been rationalized. Here, the experimental findings of strain-inhibited structural transition from perovskite to brownmillerite during the electromigration of oxygen vacancies in epitaxial LaCoO3 thin films are demonstrated. The results indicate that the oxygen vacancy ordering phase induced by the electric field is suppressed locally by both epitaxial strain field and external loads shown by in situ aberration-corrected (scanning)/ transmission electron microscopy. The demonstrated complex interplay between the electric and strain fields in the structural transitions of LaCoO3 opens up prospects for manipulating new physical properties by external excitations and/or strain engineering of a substrate.

源语言英语
页(从-至)36800-36806
页数7
期刊ACS Applied Materials and Interfaces
11
40
DOI
出版状态已出版 - 9 10月 2019
已对外发布

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