柔性PVDF-BaTiO3纳米复合材料用于压力传感器

D. Olmos, G. González‐Gaitano, R. Vela, L. Cordoba, J. González‐Benito, A. Kholkin
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引用次数: 6

摘要

本文采用低温高能球磨法制备了PVDF-BaTiO3复合材料。加入不同重量分数的亚微米BaTiO3颗粒的PVDF-BaTiO3混合物进行了1 h的有效研磨。通过施加200°C的压力,得到的粉末以相对较薄的圆盘的形式成型。采用DSC、FTIR、XRD、SEM等常规技术对材料进行了形貌和结构表征。并对试样进行了压电特性分析。采用宏观攻丝在材料中感应电压。结果表明,输出电压随BaTiO3颗粒含量的增加而减小。最后,利用AFM显微镜对试样的压电行为响应进行了跟踪,得到了施加电信号时悬臂梁的垂直挠度。
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Flexible PVDF-BaTiO3 nanocomposites for pressure sensors
In this work, PVDF-BaTiO3 composites were prepared using cryogenic high-energy ball milling (HEBM). PVDF-BaTiO3 mixtures with different weight fractions of submicrometric BaTiO3 particles were subjected to 1 h of effective milling. By applying pressure at 200 °C the resulting powder was molded in the form of relatively thin discs. Morphological and structural characterization of the materials was done using conventional techniques (DSC, FTIR, XRD, SEM). Piezoelectric characterization of the specimens was also carried out. Macroscopic tapping was used to induce a voltage in the materials. It was found that the output voltage decreases with the amount of BaTiO3 particles. Finally, the piezoelectric behavior response of the samples was followed by an AFM microscope, the vertical deflection of the cantilever was obtained when an electrical signal was applied to the samples.
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