Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties

The discovery of some Aurivillius materials with high Curie temperature or fatigue-free character suggests possible applications in high temperature piezoelectric devices or non-volatile ferroelectric random access memories. Furthermore, increasing concerns for environmental issues have promoted t...

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Main Authors: Jelena D. Bobić, Mirjana M. Vijatović Petrović, Biljana D. Stojanović
Format: Article
Language:English
Published: University of Novi Sad 2014-09-01
Series:Processing and Application of Ceramics
Subjects:
Online Access:http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2021%2001.pdf
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author Jelena D. Bobić
Mirjana M. Vijatović Petrović
Biljana D. Stojanović
author_facet Jelena D. Bobić
Mirjana M. Vijatović Petrović
Biljana D. Stojanović
author_sort Jelena D. Bobić
collection DOAJ
description The discovery of some Aurivillius materials with high Curie temperature or fatigue-free character suggests possible applications in high temperature piezoelectric devices or non-volatile ferroelectric random access memories. Furthermore, increasing concerns for environmental issues have promoted the study of new lead- free piezoelectric materials. Barium bismuth titanate (BaBi4Ti4O15 ), an Aurivillius compound, is promising candidate to replace lead-based materials, both as lead-free ferroelectric and high temperature piezoelectric. In this review paper, we report a detailed overview of crystal structure, different synthesis methods and char- acteristic properties of barium bismuth titanate ferroelectric materials.
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spelling doaj.art-acc3f49e8341424e85045a8f8b0ae90e2022-12-22T00:47:34ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61311820-61312014-09-01739711010.2298/PAC1303097BAurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and propertiesJelena D. Bobić0Mirjana M. Vijatović Petrović1Biljana D. Stojanović2Institute for Multidisciplinary Research, University of Belgrade, Kneza Viseslava 1, Belgrade, SerbiaInstitute for Multidisciplinary Research, University of Belgrade, Kneza Viseslava 1, Belgrade, SerbiaInstitute for Multidisciplinary Research, University of Belgrade, Kneza Viseslava 1, Belgrade, SerbiaThe discovery of some Aurivillius materials with high Curie temperature or fatigue-free character suggests possible applications in high temperature piezoelectric devices or non-volatile ferroelectric random access memories. Furthermore, increasing concerns for environmental issues have promoted the study of new lead- free piezoelectric materials. Barium bismuth titanate (BaBi4Ti4O15 ), an Aurivillius compound, is promising candidate to replace lead-based materials, both as lead-free ferroelectric and high temperature piezoelectric. In this review paper, we report a detailed overview of crystal structure, different synthesis methods and char- acteristic properties of barium bismuth titanate ferroelectric materials.http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2021%2001.pdfpiezoelectric and ferroelectric propertiesBarium bismuth titanatestructureelectrical propertiespiezoelectric propertiesferroelectric propertiesrelaxors
spellingShingle Jelena D. Bobić
Mirjana M. Vijatović Petrović
Biljana D. Stojanović
Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties
Processing and Application of Ceramics
piezoelectric and ferroelectric properties
Barium bismuth titanate
structure
electrical properties
piezoelectric properties
ferroelectric properties
relaxors
title Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties
title_full Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties
title_fullStr Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties
title_full_unstemmed Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties
title_short Aurivillius BaBi4Ti4O15 based compounds: Structure, synthesis and properties
title_sort aurivillius babi4ti4o15 based compounds structure synthesis and properties
topic piezoelectric and ferroelectric properties
Barium bismuth titanate
structure
electrical properties
piezoelectric properties
ferroelectric properties
relaxors
url http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2021%2001.pdf
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