Octahedral tilt-driven phase transitions in BaZrS$_3$ chalcogenide perovskite

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Kayastha, Prakriti, Fransson, Erik, Erhart, Paul, Whalley, Lucy D.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916602291683328
author Kayastha, Prakriti
Fransson, Erik
Erhart, Paul
Whalley, Lucy D.
author_facet Kayastha, Prakriti
Fransson, Erik
Erhart, Paul
Whalley, Lucy D.
contents Chalcogenide perovskites are lead-free materials for potential photovoltaic or thermoelectric applications. BaZrS$_3$ is the most studied member of this family due to its superior thermal and chemical stability, desirable optoelectronic properties, and low thermal conductivity. Phase transitions of BaZrS$_3$ remain underexplored in the literature, as most experimental characterizations of this material have been performed at ambient conditions where the orthorhombic Pnma phase is reported to be stable. In this work, we study the dynamics of BaZrS$_3$ across a range of temperatures and pressures using an accurate machine-learning interatomic potential trained with data from hybrid density functional theory calculations. At 0 Pa, we find a first-order phase transition from the orthorhombic to tetragonal I4/mcm phase at 610 K, and a second-order transition from the tetragonal to the cubic Pm-3m phase at 880 K. The tetragonal phase is stable over a larger temperature range at higher pressures. To confirm the validity of our model we compare our results with a range of published experimental data and report a prediction for the X-ray diffraction pattern as a function of temperature.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14289
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Octahedral tilt-driven phase transitions in BaZrS$_3$ chalcogenide perovskite
Kayastha, Prakriti
Fransson, Erik
Erhart, Paul
Whalley, Lucy D.
Materials Science
Chemical Physics
Chalcogenide perovskites are lead-free materials for potential photovoltaic or thermoelectric applications. BaZrS$_3$ is the most studied member of this family due to its superior thermal and chemical stability, desirable optoelectronic properties, and low thermal conductivity. Phase transitions of BaZrS$_3$ remain underexplored in the literature, as most experimental characterizations of this material have been performed at ambient conditions where the orthorhombic Pnma phase is reported to be stable. In this work, we study the dynamics of BaZrS$_3$ across a range of temperatures and pressures using an accurate machine-learning interatomic potential trained with data from hybrid density functional theory calculations. At 0 Pa, we find a first-order phase transition from the orthorhombic to tetragonal I4/mcm phase at 610 K, and a second-order transition from the tetragonal to the cubic Pm-3m phase at 880 K. The tetragonal phase is stable over a larger temperature range at higher pressures. To confirm the validity of our model we compare our results with a range of published experimental data and report a prediction for the X-ray diffraction pattern as a function of temperature.
title Octahedral tilt-driven phase transitions in BaZrS$_3$ chalcogenide perovskite
topic Materials Science
Chemical Physics
url https://arxiv.org/abs/2411.14289