Structure and bonding in PbZrO3–PbTiO3 (PZT) alloys

G. Rossetti
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引用次数: 7

Abstract

Abstract Alloys of PbZrO3–PbT iO3 (PZT) exhibit a complex series of ferroic lattice instabilities that depend on the Zr/Ti ratio and give rise to exceptional pyroelectric and piezoelectric properties. An approach based on energetics and crystal chemical systematics is discussed that relates structure and bonding in PZT to its subsolidus phase diagram. Heats of formation, heat contents and contributions to lattice energies across the phase diagram are correlated with the perovskite tolerance factor and with displacements of Pb and (Zr, Ti) cations f rom their high symmetry positions. It is shown that at 973 K the cubic phase contains precursors of the lattice instabilities and the differing displacements of Ti and Zr inferred for the lower symmetry phases at lower temperatures. Modulations in local structure, revealed in the ratio of Pb to (Zr, Ti) cation displacements, are related to the transition temperature from the paraelectric cubic phase to the ferroic phases.
PbZrO3-PbTiO3 (PZT)合金的结构与键合
摘要:PbZrO3-PbT iO3 (PZT)合金表现出一系列复杂的铁晶格不稳定性,这些不稳定性取决于Zr/Ti比,并产生了优异的热释电和压电性能。讨论了一种基于能量学和晶体化学系统学的方法,将PZT的结构和键合与它的亚固相图联系起来。生成热、热含量和对相图晶格能的贡献与钙钛矿容限因子以及Pb和(Zr, Ti)阳离子从高对称位置的位移有关。结果表明,在973 K时,立方相包含晶格不稳定性的前驱体,并且在较低温度下推断出较低对称性相的Ti和Zr的不同位移。Pb与(Zr, Ti)阳离子位移的比值显示了局部结构的变化,这与从准电立方相到铁相的转变温度有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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