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Phase morphology and crystallinity of poly(vinylidene fluoride)/poly(ethylene oxide) piezoelectric blend membranes

机译:聚偏二氟乙烯/聚环氧乙烷压电共混膜的相形貌和结晶度

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摘要

Polymer blends based on poly(vinylidene fluoride), PVDF and poly(ethylene oxide), PEO, with varying compositions have been prepared by solvent casting, the polymer blend films being obtained from solutions in dimethyl formamide at 70ºC. Under these conditions PVDF crystallizes from solution while PEO remains in the molten state. Then, PEO crystallizes from the melt confined by PVDF crystalls during cooling to room temperature. PVDF crystallized from DMF solutions adopt predominantly the electroactive β-phase (85%). Nevertheless when PEO is introduced in the polymer blend the β-phase content decreases slightly to 70%. The piezoelectric coefficient (d33) in pristine PVDF is -5 pC/N and decreases with increasing PEO content in the PVDF/PEO blends. Blend morphology, observed by electron and atomic force microscopy, shows the confinement of PEO between the already formed PVDF crystals. On the other hand the sample contraction when PEO is extracted from the blend with water (which is not a solvent for PVDF) allows proving the co-continuity of both phases in the blend. PEO crystallization kinetics have been characterized by DSC both in isothermal and cooling scans experiments showing important differences in crystalline fraction and crystallization rate with sample composition.
机译:已经通过溶剂浇铸制备了具有不同组成的,基于聚偏二氟乙烯,PVDF和聚环氧乙烷,PEO的聚合物共混物,该聚合物共混物薄膜是由70ºC的二甲基甲酰胺溶液制得的。在这些条件下,PVDF从溶液中结晶出来,而PEO保持熔融状态。然后,在冷却至室温期间,PEO从PVDF结晶所限制的熔体中结晶。从DMF溶液中结晶出来的PVDF主要采用电活性β相(85%)。但是,当将PEO引入聚合物共混物中时,β相含量会略微降低至70%。原始PVDF中的压电系数(d33)为-5 pC / N,并随着PVDF / PEO共混物中PEO含量的增加而降低。通过电子和原子力显微镜观察到的共混物形态表明,PEO在已形成的PVDF晶体之间的局限性。另一方面,当用水(不是PVDF的溶剂)从共混物中提取PEO时,样品收缩可证明共混物中两相的连续性。在等温和冷却扫描实验中,通过DSC对PEO结晶动力学进行了表征,结果表明,结晶度和结晶速率随样品组成的不同而存在重要差异。

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