Film thickness dependence of ferroelectric properties in polar-axis-oriented epitaxial tetragonal (Bi,K)TiO3 films prepared by hydrothermal method
Author(s) -
Rurika Kubota,
Akinori Tateyama,
Takahisa Shiraishi,
Yoshiharu Ito,
Minoru Kurosawa,
Hiroshi Funakubo
Publication year - 2022
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/5.0084170
Subject(s) - ferroelectricity , materials science , tetragonal crystal system , epitaxy , hydrothermal circulation , polarization (electrochemistry) , perovskite (structure) , thin film , phase (matter) , dielectric , mineralogy , composite material , nanotechnology , crystallography , optoelectronics , chemical engineering , layer (electronics) , chemistry , engineering , organic chemistry
Tetragonal (00l)-oriented epitaxial (Bi,K)TiO 3 films were grown at 240 °C on (100) c SrRuO 3 //(100)SrTiO 3 substrates by the hydrothermal method. KOH aqueous solutions and Bi(NO 3 ) 3 · 5H 2 O and TiO 2 powders were used as the starting materials. Film thickness was controlled from 33 to 1200 nm by changing the deposition time, and the Bi/(Bi+K) ratio in the A-site of perovskite ABO 3 was almost constant for all film thicknesses. Polar-axis (00l)-oriented epitaxial (Bi,K)TiO 3 films were obtained without a secondary phase and/or other orientation for all thickness ranges. Large ferroelectricity with the remanent polarization ( P r ) of about 84 µC/cm 2 , comparable to previously reported lead-based ferroelectric films, was observed for (Bi,K)TiO 3 films down to 33 nm in thickness. On the other hand, E c increased with decreasing film thickness, but did not show strong film thickness dependence like other perovskite ferroelectric films. These data are very useful for understanding the degradation mechanism of ferroelectric thin films.
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