Synergy of PMN-PT with piezoelectric polymer using sugar casting method for sensing applications

R. Mansour, O. Omoniyi, A. Reid, W. Brindley, B. G. Stewart, J. Windmill
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引用次数: 2

Abstract

Sugar casting is a simple and cost-effective direct method of generating polymer foams. By incorporating grains directly into mixtures of polymer and piezoelectric nanoparticles it is possible to create highly compliant materials with excellent piezoelectric properties. In this work, we use the sugar casting method in combination with spin coating to prepare a highly sensitive and flexible 0-3 piezoelectric polymer thin film membranes with a layer thickness of 20 to 190 µm. Porosities and elasticity are tuned by simply adjusting the sugar/polymer mass ratio. The expected outcome of this research was improvements to the piezoelectric voltage, the g33 measure, due to the increased compliance of the material, however iezoelectric composite membranes with high concentrations of PMN-PT also demonstrated gains in piezoelectric coupling, the d33 measure, when cast with high volume fractions of sugar. A remarkably high d33 coefficient of 69 pm/V was measured using the laser vibrometer technique. These innovative materials were developed as broadband ultrasonic sensors for partial discharge detection in undersea cables, however they have potential uses in energy scavenging platforms, biosensors, and acoustic actuators, among others.
PMN-PT与压电聚合物协同作用的糖铸法传感应用
铸糖是一种简单、经济的直接生产聚合物泡沫的方法。通过将颗粒直接掺入聚合物和压电纳米颗粒的混合物中,可以制造出具有优异压电性能的高度柔顺的材料。在这项工作中,我们采用糖浇铸法结合自旋涂层制备了一种高灵敏度和柔性的0-3压电聚合物薄膜,层厚为20 ~ 190µm。孔隙率和弹性可以通过简单地调整糖/聚合物的质量比来调节。由于材料的顺应性增加,本研究的预期结果是压电电压(g33测量)的改善,然而,当浇铸高体积分数的糖时,具有高浓度PMN-PT的压电复合膜也显示出压电耦合(d33测量)的增益。采用激光测振仪技术测得d33系数高达69 pm/V。这些创新材料是作为宽带超声波传感器开发的,用于海底电缆的局部放电检测,但它们在能量清除平台、生物传感器和声学致动器等方面具有潜在的用途。
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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