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The Complex Media of Ferroelectric and Related Materials

机译:铁电及相关材料的复合介质

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摘要

Macroscopic dielectric and piezoelectric properties are strongly influenced by structural features that span a wide variety of length scales in ferroelectric based materials. This paper will address a number of examples of such features in important materials that are presently being developed for next generation capacitor devices and/or piezoelectric sensors or actuators. Special emphasis will be given to the interrelationship of crystal structure, crystal chemistry, phase transition, and properties in perovskite crystal structures which can host ferroic behavior. This ferroic behavior includes ferroelectric, antiferroelectric, and ferroelastic transitions. Transmission electron microscopy techniques will be used to demonstrate and characterize the detailed structure of the ferroelectric in which dielectric and piezoelectric properties emerge.
机译:宏观介电和压电性能受跨越铁电材料中各种长度尺度的结构特征的强烈影响。本文将介绍当前正在为下一代电容器设备和/或压电传感器或执行器开发的重要材料中此类特征的许多示例。将特别强调晶体结构,晶体化学,相变和钙钛矿晶体结构的特性之间的相互关系,而钙钛矿晶体结构可能具有铁性行为。这种铁性行为包括铁电,反铁电和铁弹性跃迁。透射电子显微镜技术将用于演示和表征铁电体的详细结构,其中出现介电和压电特性。

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