Flexoelectric Domain Walls Originated from Structural Phase Transition in Epitaxial BiVO4 Films

Polar domain walls in centrosymmetric ferroelastics induce inhomogeneity that is the origin of advantageous multifunctionality. In particular, polar domain walls promote charge-carrier separation and hence are promising for energy conversion applications that overcome the hurdles of the rate-limiting step in the traditional photoelectrochemical water splitting processes. Yet, while macroscopic studies investigate the materials at the device scale, the origin of this phenomenon in general and the emergence of polar domain walls during the structural phase transition in particular has remained elusive, encumbering the development of this attractive system. Here, it is demonstrated that twin domain walls arise in centrosymmetric BiVO4 films and they exhibit localized piezoelectricity. It is also shown that during the structural phase transition from the tetragonal to monoclinic, the symmetry reduction is accompanied by an emergence of strain gradient, giving rise to flexoelectric effect and the polar domain walls. These results not only expose the emergence of polar domain walls at centrosymmetric systems by means of direct observation, but they also expand the realm of potential application of ferroelastics, especially in photoelectrochemistry and local piezoelectricity.

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Work Title Flexoelectric Domain Walls Originated from Structural Phase Transition in Epitaxial BiVO4 Films
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Open Access
Creators
  1. Pao-Wen Shao
  2. Heng-Jui Liu
  3. Yuanwei Sun
  4. Mei Wu
  5. Ren-Ci Peng
  6. Meng Wang
  7. Fei Xue
  8. Xiaoxing Cheng
  9. Lei Su
  10. Peng Gao
  11. Pu Yu
  12. Long-Qing Chen
  13. Xiaoqing Pan
  14. Yachin Ivry
  15. Yi-Chun Chen
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. Small
Publication Date March 2022
Publisher Identifier (DOI)
  1. https://doi.org/10.1002/smll.202107540
Deposited August 11, 2022

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    Acknowledgments
    • Author list: Pao-Wen Shao, Heng-Jui Liu, Yuanwei Sun, Mei Wu, Ren-Ci Peng, Meng Wang, Fei Xue, Xiaoxing Cheng, Lei Su, Peng Gao, Pu Yu, Long-Qing Chen, Xiaoqing Pan, Yachin Ivry, Yi-Chun Chen, and Ying-Hao Chu
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    Publisher
    • Small
    Publisher Identifier (DOI)
    • https://doi.org/10.1002/smll.202107540
  • Updated Acknowledgments Show Changes
    Acknowledgments
    • Author list: Pao-Wen Shao, Heng-Jui Liu, Yuanwei Sun, Mei Wu, Ren-Ci Peng, Meng Wang, Fei Xue, Xiaoxing Cheng, Lei Su, Peng Gao, Pu Yu, Long-Qing Chen, Xiaoqing Pan, Yachin Ivry, Yi-Chun Chen, and Ying-Hao Chu
  • Deleted Creator Sandra Elder
  • Added Creator Pao-Wen Shao
  • Added Creator Heng-Jui Liu
  • Added Creator Yuanwei Sun
  • Added Creator Mei Wu
  • Added Creator Ren-Ci Peng
  • Added Creator Meng Wang
  • Added Creator Fei Xue
  • Added Creator Xiaoxing Cheng
  • Added Creator Lei Su
  • Added Creator Peng Gao
  • Added Creator Pu Yu
  • Added Creator Long-Qing Chen
  • Added Creator Xiaoqing Pan
  • Added Creator Yachin Ivry
  • Added Creator Yi-Chun Chen
  • Updated