Electrostatically Driven Polarization Flop and strain-induced Curvature in free-standing Ferroelectric Superlattices

Li, Yaqi, Zatterin, Edoardo, Conroy, Michele et al. (14 more authors) (2022) Electrostatically Driven Polarization Flop and strain-induced Curvature in free-standing Ferroelectric Superlattices. Advanced Materials. 2106826. ISSN 0935-9648

Abstract

Metadata

Authors/Creators:
  • Li, Yaqi
  • Zatterin, Edoardo
  • Conroy, Michele
  • Pylypets, Anastasiia
  • Borodavka, Fedir
  • Björling, Alexander
  • Groenendijk, Dirk J.
  • Lesne, Edouard
  • Clancy, Adam J.
  • Hadjimichael, Marios
  • Kepaptsoglou, Demie ORCID logo https://orcid.org/0000-0003-0499-0470
  • Ramasse, Quentin
  • Caviglia, Andrea
  • Hlinka, Jiri
  • Bangert, Ursel
  • Leake, Steven
  • Zubko, Pavlo
Copyright, Publisher and Additional Information: © 2022 The Authors.
Keywords: ferroelectric domains, free-standing membranes, microtubes, strain engineering
Dates:
  • Accepted: 7 January 2022
  • Published (online): 22 January 2022
  • Published: 14 April 2022
Institution: The University of York
Academic Units: The University of York > Faculty of Sciences (York) > Physics (York)
Depositing User: Pure (York)
Date Deposited: 13 Dec 2022 11:40
Last Modified: 06 Dec 2023 14:34
Published Version: https://doi.org/10.1002/adma.202106826
Status: Published
Refereed: Yes
Identification Number: https://doi.org/10.1002/adma.202106826

Download

Filename: Advanced_Materials_2022_Li_Electrostatically_Driven_Polarization_Flop_and_Strain_Induced_Curvature_in_Free_Standing.pdf

Description: Advanced Materials - 2022 - Li - Electrostatically Driven Polarization Flop and Strain‐Induced Curvature in Free‐Standing

Licence: CC-BY 2.5

Export

Statistics