Nanostructure stabilization by low-temperature dopant pinning in multiferroic BiFeO <sub>3</sub> -based thin films produced by aqueous chemical solution deposition

Стабилизация наноструктуры посредством низкотемпературного закрепления примесей в мультиферроидных тонких пленках на основе BiFeO3, полученных методом химического осаждения из водного раствора
Carlos Gumiel, Teresa Jardiel, David G. Calatayud, Thomas Vranken, Marlies K. Van Bael, An Hardy, M. L. Calzada, Ricardo Jiménez, M. Garcı́a-Hernández, F. J. Mompeán, A. C. Caballero, M. Peiteado
2020-01-01

aqueous chemical solution depositiondopant pinningmultiferroic BiFeO3nanostructure stabilizationthin films
BiFeO <sub>3</sub> single-phase thin films with an effective and tuneable multiferroic response are obtained in aqueous media by using mild processing conditions.
1
Aqueous processing provides a route to controlling multiferroic properties in BiFeO3 thin films.
2
Mild, low-temperature processing conditions enable stabilization of nanostructures through dopant pinning.
3
Single-phase BiFeO3 thin films are successfully produced using aqueous chemical solution deposition.
4
The resulting BiFeO3-based thin films exhibit effective and tunable multiferroic responses.

BiFeO3-based single-phase multiferroic thin films produced by aqueous chemical solution deposition

nanostructure stabilization and tunable multiferroic response enabled by low-temperature dopant pinning under mild processing conditions

Publication Details
Publication Date
2020-01-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Carlos Gumiel
Teresa Jardiel
David G. Calatayud
Thomas Vranken
Marlies K. Van Bael
An Hardy
M. L. Calzada
Ricardo Jiménez
M. Garcı́a-Hernández
F. J. Mompeán
A. C. Caballero
M. Peiteado
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%