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High-sensitivity piezoelectric perovskites for magnetoelectric composites

机译:磁电复合材料用高灵敏度压电钙钛矿

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摘要

A highly topical set of perovskite oxides are high-sensitivity piezoelectric ones, among which Pb(Zr,Ti)O3 at the morphotropic phase boundary (MPB) between ferroelectric rhombohedral and tetragonal polymorphic phases is reckoned a case study. Piezoelectric ceramics are used in a wide range of mature, electromechanical transduction technologies like piezoelectric sensors, actuators and ultrasound generation, to name only a few examples, and more recently for demonstrating novel applications like magnetoelectric composites. In this case, piezoelectric perovskites are combined with magnetostrictive materials to provide magnetoelectricity as a product property of the piezoelectricity and piezomagnetism of the component phases. Interfaces play a key issue, for they control the mechanical coupling between the piezoresponsive phases. We present here main results of our investigation on the suitability of the high sensitivity MPB piezoelectric perovskite BiScO3–PbTiO3 in combination with ferrimagnetic spinel oxides for magnetoelectric composites. Emphasis has been put on the processing at low temperature to control reactions and interdiffusion between the two oxides. The role of the grain size effects is extensively addressed.
机译:钙钛矿氧化物是最受关注的高压电压电氧化物,其中以铁电菱形和四方多晶相之间的形态相界(MPB)处的Pb(Zr,Ti)O3为例。压电陶瓷被广泛用于各种成熟的机电转换技术中,例如压电传感器,致动器和超声发生器,仅举几个例子,最近还用于演示新颖的应用,例如磁电复合材料。在这种情况下,将压电钙钛矿与磁致伸缩材料结合,以提供磁电作为组分相的压电性和压磁性的产物。接口起着关键作用,因为它们控制了压电响应相之间的机械耦合。我们在这里介绍我们的研究的主要结果,该研究涉及高灵敏度MPB压电钙钛矿BiScO3–PbTiO3结合亚铁尖晶石氧化物对磁电复合材料的适用性。重点放在低温处理上,以控制两种氧化物之间的反应和相互扩散。晶粒尺寸效应的作用已得到广泛解决。

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