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Printing two-dimensional gallium phosphate out of liquid metal

Author

Listed:
  • Nitu Syed

    (RMIT University)

  • Ali Zavabeti

    (RMIT University)

  • Jian Zhen Ou

    (RMIT University)

  • Md Mohiuddin

    (RMIT University)

  • Naresh Pillai

    (RMIT University)

  • Benjamin J. Carey

    (University of Münster)

  • Bao Yue Zhang

    (RMIT University)

  • Robi S. Datta

    (RMIT University)

  • Azmira Jannat

    (RMIT University)

  • Farjana Haque

    (RMIT University)

  • Kibret A. Messalea

    (RMIT University)

  • Chenglong Xu

    (RMIT University)

  • Salvy P. Russo

    (RMIT University)

  • Chris F. McConville

    (RMIT University)

  • Torben Daeneke

    (RMIT University)

  • Kourosh Kalantar-Zadeh

    (RMIT University
    University of New South Wales)

Abstract

Two-dimensional piezotronics will benefit from the emergence of new crystals featuring high piezoelectric coefficients. Gallium phosphate (GaPO4) is an archetypal piezoelectric material, which does not naturally crystallise in a stratified structure and hence cannot be exfoliated using conventional methods. Here, we report a low-temperature liquid metal-based two-dimensional printing and synthesis strategy to achieve this goal. We exfoliate and surface print the interfacial oxide layer of liquid gallium, followed by a vapour phase reaction. The method offers access to large-area, wide bandgap two-dimensional (2D) GaPO4 nanosheets of unit cell thickness, while featuring lateral dimensions reaching centimetres. The unit cell thick nanosheets present a large effective out-of-plane piezoelectric coefficient of 7.5 ± 0.8 pm V−1. The developed printing process is also suitable for the synthesis of free standing GaPO4 nanosheets. The low temperature synthesis method is compatible with a variety of electronic device fabrication procedures, providing a route for the development of future 2D piezoelectric materials.

Suggested Citation

  • Nitu Syed & Ali Zavabeti & Jian Zhen Ou & Md Mohiuddin & Naresh Pillai & Benjamin J. Carey & Bao Yue Zhang & Robi S. Datta & Azmira Jannat & Farjana Haque & Kibret A. Messalea & Chenglong Xu & Salvy P, 2018. "Printing two-dimensional gallium phosphate out of liquid metal," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-06124-1
    DOI: 10.1038/s41467-018-06124-1
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    Cited by:

    1. Hongjoo Shin & Doosun Hong & Hyunjin Cho & Hanhwi Jang & Geon Yeong Kim & Kyeong Min Song & Min-Jae Choi & Donghun Kim & Yeon Sik Jung, 2024. "Indirect-to-direct bandgap transition in GaP semiconductors through quantum shell formation on ZnS nanocrystals," Nature Communications, Nature, vol. 15(1), pages 1-10, December.

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