Piezoelectric properties in sub-micron ferroelectric polymer films

I. Guy, Z. Zheng
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Abstract

The piezoelectric and electrostrictive response of spun cast films of the ferroelectric vinylidene fluoride/trifluoroethylene copolymers, with thicknesses around 100 nm, have been measured. The measurements have been carried out both on a macroscopic scale, using interferometry, and on a microscopic scale using atomic force microscopy. The interferometry results suggest that in samples exposed to a constant external electric field, the biased electrostrictive response causes a significant decrease in the apparent piezoelectric response. The atomic force microscope results allow the observation of electromechanical activity at the scale of the individual crystallites. Preliminary results from unpoled films suggest that the electrostrictive response is largest in the region at the interface of the crystalline and amorphous phases. A small piezoelectric response is also observed in this region, possibly arising from biased electrostriction.
亚微米铁电聚合物薄膜的压电特性
测量了厚度约为100 nm的铁电偏氟乙烯/三氟乙烯共聚物纺铸膜的压电和电伸缩响应。测量已经在宏观尺度上进行,使用干涉测量法,在微观尺度上使用原子力显微镜。干涉测量结果表明,在恒定外电场下,偏电致伸缩响应导致表观压电响应显著降低。原子力显微镜的结果允许在单个晶体的尺度上观察机电活动。未极化薄膜的初步结果表明,电致伸缩响应在晶态和非晶态界面区域最大。在这个区域也观察到一个小的压电响应,可能是由偏置电伸缩引起的。
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