BaTiO$_3$ -- SrTiO$_3$ composites: a microscopic study on paraelectric cubic inclusions

Fuente: arXiv
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Main Authors: Teng, Sheng-Han, Anabaraonye, Chinwendu, Grünebohm, Anna
Format: Preprint
Published: 2025
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author Teng, Sheng-Han
Anabaraonye, Chinwendu
Grünebohm, Anna
author_facet Teng, Sheng-Han
Anabaraonye, Chinwendu
Grünebohm, Anna
contents Composites of ferroelectric and paraelectric perovskites have attracted a lot of attention due to their application potential in energy storage as well as novel computing and memory devices. So far the main focus of research has been on superlattices and ferroelectric particles in a paraelectric matrix, while the impact of paraelectric inclusions on the ferroelectric matrix is surprisingly underrepresented. To close this gap in knowledge we perform molecular dynamics simulations using an $ab\ initio$ derived effective Hamiltonian for BaTiO$_3$--SrTiO$_3$ and reveal the dependency of phase stability and phase transitions on the size and distances of paraelectric inclusions. We discuss how the combination of compressive strain and depolarization fields at the SrTiO$_3$ interfaces induces large local polarization, complex domain structures and coexisting phases as well as diffuse phase transitions and reduced coercive fields.
format Preprint
id arxiv_https___arxiv_org_abs_2501_02853
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle BaTiO$_3$ -- SrTiO$_3$ composites: a microscopic study on paraelectric cubic inclusions
Teng, Sheng-Han
Anabaraonye, Chinwendu
Grünebohm, Anna
Materials Science
Composites of ferroelectric and paraelectric perovskites have attracted a lot of attention due to their application potential in energy storage as well as novel computing and memory devices. So far the main focus of research has been on superlattices and ferroelectric particles in a paraelectric matrix, while the impact of paraelectric inclusions on the ferroelectric matrix is surprisingly underrepresented. To close this gap in knowledge we perform molecular dynamics simulations using an $ab\ initio$ derived effective Hamiltonian for BaTiO$_3$--SrTiO$_3$ and reveal the dependency of phase stability and phase transitions on the size and distances of paraelectric inclusions. We discuss how the combination of compressive strain and depolarization fields at the SrTiO$_3$ interfaces induces large local polarization, complex domain structures and coexisting phases as well as diffuse phase transitions and reduced coercive fields.
title BaTiO$_3$ -- SrTiO$_3$ composites: a microscopic study on paraelectric cubic inclusions
topic Materials Science
url https://arxiv.org/abs/2501.02853