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Highly heterogeneous epitaxy of flexoelectric BaTiO membrane on Ge. | LitMetric

Highly heterogeneous epitaxy of flexoelectric BaTiO membrane on Ge.

Nat Commun

Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, School of Electronic Science and Engineering & The International Joint Laboratory for Micro/Nano Manufacturing and Measurement Technology, Xi'an Jiaotong University, Xi'an, 710049, China.

Published: May 2022

AI Article Synopsis

  • Integration of complex oxides on silicon, germanium, and flexible substrates is crucial for advanced devices in information technology.
  • The study showcases successful remote epitaxy of BaTiO (BTO) on germanium using a graphene layer, dependent on the surface orientation of Ge.
  • The resulting BTO films exhibit superior flexoelectric properties and can be easily transferred to various substrates, enhancing potential device applications.

Article Abstract

The integration of complex oxides with a wide spectrum of functionalities on Si, Ge and flexible substrates is highly demanded for functional devices in information technology. We demonstrate the remote epitaxy of BaTiO (BTO) on Ge using a graphene intermediate layer, which forms a prototype of highly heterogeneous epitaxial systems. The Ge surface orientation dictates the outcome of remote epitaxy. Single crystalline epitaxial BTO films were grown on graphene/Ge (011), whereas graphene/Ge (001) led to textured films. The graphene plays an important role in surface passivation. The remote epitaxial deposition of BTO follows the Volmer-Weber growth mode, with the strain being partially relaxed at the very beginning of the growth. Such BTO films can be easily exfoliated and transferred to arbitrary substrates like Si and flexible polyimide. The transferred BTO films possess enhanced flexoelectric properties with a gauge factor of as high as 1127. These results not only expand the understanding of heteroepitaxy, but also open a pathway for the applications of devices based on complex oxides.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9151678PMC
http://dx.doi.org/10.1038/s41467-022-30724-7DOI Listing

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