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Nucleation of the electroactive phase of poly(vinylidene fluoride) by ferrite nanoparticles : surface versus size effects

机译:铁氧体纳米粒子对聚偏二氟乙烯电活性相的成核作用:表面效应与尺寸效应

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摘要

Multiferroics and magnetoelectric materials show interesting scientific challenges and technnologial applications in sensors, acuators and data storage. In view of the fact that only a small number of materials show this kind of properties, exhaustive research activity is being pursued towards the development of new composite materials. Multiferroic nanocomposites films composed of piezoelectric poly(vinylidene fluoride) (PVDF) and magnetostrictive nano-size CoFe2O4, NiFe2O4 or NiZnFe2O4 ferrites were prepared by a solution method. Those ferrite nanoparticles have the ability to nucleate the electroactive -phase of the polymer, providing in this way an easy route for the preparation of magnetoelectric particulate composites. The fact that the different nanoparticles promotes different amount of -phase nucleation for different concentrations of nanoparticles indicates that filler size is not the most important parameter determining phase nucleation but the filler-matrix surface interaction. Further, when the polymer-ferrite surface interaction is modified through surfactation, the electroactive phase is not nucleated.
机译:多元铁磁材料和磁电材料在传感器,算子和数据存储中显示出有趣的科学挑战和技术应用。鉴于只有极少数的材料显示出这种特性,因此正在对开发新的复合材料进行详尽的研究活动。通过溶液法制备了由压电聚偏二氟乙烯(PVDF)和磁致伸缩纳米级CoFe2O4,NiFe2O4或NiZnFe2O4铁氧体组成的多铁纳米复合膜。那些铁氧体纳米颗粒具有使聚合物的电活性α-相成核的能力,从而为制备磁电颗粒复合材料提供了简便的途径。对于不同浓度的纳米颗粒,不同的纳米颗粒会促进不同数量的α相成核,这一事实表明填料尺寸不是决定相成核的最重要参数,而是填料-基质表面相互作用。此外,当通过表面修饰来改变聚合物-铁氧体的表面相互作用时,电活性相不会成核。

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