A Boltzmann statistical approach for the analysis of polarization states in mixed phase ferroelectric materials: application to morphological phase boundary
Abhijit Pramanick, Laurent Daniel

TL;DR
This paper introduces a Boltzmann statistical approach combined with Landau phenomenology to analyze phase and domain behavior in mixed phase ferroelectrics, specifically applied to Pb(Zr,Ti)O3 near the morphotropic phase boundary, aiding in understanding their macroscopic properties.
Contribution
It presents a novel methodology integrating Boltzmann statistics with Landau free energy to evaluate phase and domain fractions in mixed ferroelectrics under complex loading conditions.
Findings
Grain orientation significantly influences phase transition behavior.
Polycrystalline responses depend on the distribution of domain switching modes.
Material near MPB shows evolving phase and domain fractions with applied conditions.
Abstract
Ferroelectrics are widely used for a broad array of technological applications due to their attractive electrical and electromechanical properties. In order to obtain large functional properties, material compositions are often designed to favor a coexistence of multiple ferroelectric phases. For such compositions, the macroscopically observed properties are variously attributed to easier domain switching and/or phase transition. Nevertheless, modelling of concurrent domain switching and phase transition in mixed phase ferroelectrics remains a challenging task. Here, a methodology is presented to quantitatively evaluate the volume fractions of different domain variants in a mixed phase ferroelectric under complex electromechanical loading. The methodology combines the phenomenology of Landau free energy of ferroelectric phases with Boltzmann statistical analysis, and is presented for…
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Taxonomy
TopicsUltrasonics and Acoustic Wave Propagation
