Navigation auf zora.uzh.ch

Search ZORA

ZORA (Zurich Open Repository and Archive)

Large Tuning of Electroresistance in an Electromagnetic Device Structure Based on the Ferromagnetic–Piezoelectric Interface

Wu, Zhenping; Boselli, Margherita; Li, Danfeng; Fête, Alexandre; Gibert, Marta; Viret, Michel; Gariglio, Stefano (2021). Large Tuning of Electroresistance in an Electromagnetic Device Structure Based on the Ferromagnetic–Piezoelectric Interface. ACS applied materials & interfaces, 13(16):18984-18990.

Abstract

The electrical control of the conducting state through phase transition and/or resistivity switching in heterostructures of strongly correlated oxides is at the core of the large on-going research activity of fundamental and applied interest. In an electromechanical device made of a ferromagnetic–piezoelectric heterostructure, we observe an anomalous negative electroresistance of ∼−282% and a significant tuning of the metal-to-insulator transition temperature when an electric field is applied across the piezoelectric. Supported by finite-element simulations, we identify the electric field applied along the conducting bridge of the device as the plausible origin: stretching the underlying piezoelectric substrate gives rise to a lattice distortion of the ferromagnetic manganite overlayer through epitaxial strain. Large modulations of the resistance are also observed by applying static dc voltages across the thickness of the piezoelectric substrate. These results indicate that the emergent electronic phase separation in the manganites can be selectively manipulated when interfacing with a piezoelectric material, which offers great opportunities in designing oxide-based electromechanical devices.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Physics Institute
Dewey Decimal Classification:530 Physics
Scopus Subject Areas:Physical Sciences > General Materials Science
Uncontrolled Keywords:General Materials Science
Language:English
Date:28 April 2021
Deposited On:11 Jan 2022 13:38
Last Modified:16 Mar 2025 04:34
Publisher:American Chemical Society (ACS)
ISSN:1944-8244
OA Status:Closed
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1021/acsami.1c00085
Project Information:
  • Funder: State Key Laboratory of Information Photonics and Optical Communications
  • Grant ID:
  • Project Title:
  • Funder: Ministry of Education of the People's Republic of China
  • Grant ID:
  • Project Title:

Metadata Export

Statistics

Citations

Altmetrics

Downloads

1 download since deposited on 11 Jan 2022
0 downloads since 12 months
Detailed statistics

Authors, Affiliations, Collaborations

Similar Publications