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Theoretical investigations of the bulk modulus in the tetra-cubic transition of PbTiO3 material

机译:PbTiO3材料四方相变中的体积模量的理论研究

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摘要

Resulting from ion displacement in a solid under pressure, piezoelectricity is an electrical polarization that can be observed in perovskite-type electronic ceramics, such as PbTiO3, which present cubic and tetragonal symmetries at different pressures. The transition between these crystalline phases is determined theoretically through the bulk modulus from the relationship between material energy and volume. However, the change in the material molecular structure is responsible for the piezoelectric effect. In this study, density functional theory calculations using the Becke 3-Parameter-Lee-Yang-Parr hybrid functional were employed to investigate the structure and properties associated with the transition state of the tetragonal-cubic phase change in PbTiO3 material.
机译:由于离子在压力下在固体中的位移,压电性是一种电极化,可以在钙钛矿型电子陶瓷(例如PbTiO3)中观察到,该陶瓷在不同压力下呈现立方和四方对称性。这些结晶相之间的过渡理论上是根据材料能量与体积之间的关系通过体积模量确定的。但是,材料分子结构的变化是压电效应的原因。在这项研究中,使用贝克3参数-李-杨-帕尔混合函数的密度泛函理论计算来研究与PbTiO3材料中四方立方相变的过渡态有关的结构和性质。

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