Center for Space Human Robotics@PoliTo, Istituto Italiano di Tecnologia, Torino, Italy.
ACS Appl Mater Interfaces. 2013 Jul 10;5(13):6430-7. doi: 10.1021/am4016878. Epub 2013 Jun 28.
The dimensional confinement and oriented crystallization are both key factors in determining the piezoelectric properties of a polymeric nanostructured material. Here we prepare arrays of one-dimensional polymeric nanowires showing piezoelectric features by template-wetting two distinct polymers into anodic porous alumina (APA) membranes. In particular, poly(vinylidene fluoride), PVDF, and its copolymer poly(vinylidene fluoride-trifluoroethylene), PVTF, are obtained in commercially available APA, showing a final diameter of about 200 nm and several micrometers in length, reflecting the templating matrix features. We show that the crystallization of both polymers into a ferroelectric phase is directed by the nanotemplate confinement. Interestingly, the PVDF nanowires mainly crystallize into the β-phase in the nanoporous matrix, whereas the reference thin film of PVDF crystallizes in the α nonpolar phase. In the case of the PVTF nanowires, needle-like crystals oriented perpendicularly to the APA channel walls are observed, giving insight on the molecular orientation of the polymer within the nanowire structure. A remarkable piezoelectric behavior of both 1-D polymeric nanowires is observed, upon recording ferroelectric polarization, hysteresis, and displacement loops. In particular, an outstanding piezoelectric effect is observed for the PVDF nanowires with respect to the polymeric thin film, considering that no poling was carried out. Current versus voltage (I-V) characteristics showed a consistent switching behavior of the ferroelectric polar domains, thus revealing the importance of the confined and oriented crystallization of the polymer in monodimensional nanoarchitectures.
一维纳米结构材料的尺寸限制和取向结晶是决定其压电性能的关键因素。在这里,我们通过将两种不同的聚合物浸润到阳极氧化铝(APA)多孔膜中,制备了具有压电特性的一维聚合物纳米线阵列。特别是,我们在市售 APA 中获得了聚偏二氟乙烯(PVDF)及其共聚物聚偏二氟乙烯-三氟乙烯(PVTF),其最终直径约为 200nm,长度为数微米,反映了模板基质的特征。我们表明,两种聚合物的铁电相结晶均受纳米模板限制的影响。有趣的是,PVDF 纳米线主要在纳米多孔基质中结晶为β相,而参考的 PVDF 薄膜则结晶为非极性α相。对于 PVTF 纳米线,观察到沿 APA 通道壁垂直取向的针状晶体,深入了解了聚合物在纳米线结构中的分子取向。在记录铁电极化、滞后和位移回线时,观察到两种一维聚合物纳米线的显著压电行为。特别是,与聚合物薄膜相比,PVDF 纳米线表现出出色的压电效应,考虑到没有进行极化处理。电流与电压(I-V)特性显示出铁电畴的一致开关行为,从而揭示了聚合物在一维纳米结构中受限和取向结晶的重要性。