December 2022

Journal

Control of Polar Orientation and Lattice Strain in Epitaxial BaTiO3 Films on Silicon

By:
Estandia Rodriguez, Saul ; Gazquez Alabart, Jaume ; Chisholm, Matthew F; Fina, Ignasi; Fontcuberta, Josep
Journal Name:
ACS Applied Materials & Interfaces
Page Number:
25529-25535
Volume:
10
Issue Number:
30
Publication Date:
December 15, 2022
View DOI Listing:
https://doi.org/10.1021/acsami.8b07778

Abstract

Conventional strain engineering of epitaxial ferroelectric oxide thin films is based on the selection of substrates with a suitable lattice parameter. Here, we show that the variation of oxygen pressure during pulsed laser deposition is a flexible strain engineering method for epitaxial ferroelectric BaTiO3 films either on perovskite substrates or on Si(001) wafers. This unconventional growth strategy permits continuous tuning of strain up to high levels (ε > 0.8%) in films greater than one hundred nanometers thick, as well as selecting the polar axis orientation to be either parallel or perpendicular to the substrate surface plane.