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Dielectric properties of Ni-BaTiO3-PVDF composites with different Ni morphology

机译:不同Ni形貌的Ni-BaTiO3-PVDF复合材料的介电性能

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In this article, Ni particles with different morphologies including spherical Ni and fibrous Ni particles had been synthesized by co-precipitation and e polyol methods, respectively‥ As such, a three-phase percolative composites containing Ni as the conductive phase with different morphologies, BaTiO3 as the ceramic phase embedded into poly(vinylidene fluoride) (PVDF) matrix was prepared through a hot-molding technique by pressing these materials at about 190 °C under a pressure of 3 Mpa for 15 min. The effect of filler Ni morphology and content on the dielectric response of Ni-BaTiO3-PVDF composites had been investigated in detail by the characterization of Agilent E4991 for high frequency from 1 MHz to 1 GHz. The fibrous Ni-BaTiO3-PVDF composite material processes a lower percolation threshold at about 15% than 28% of the spherical system. And at the same time, other dielectric properties such as dielectric constant k enhanced through the spherical Ni conductive filler substituted by the fibrous Ni particles. This work could provide a new process to achieve a material system with low percolation threshold which is beneficial to obtain both high dielectric constant and good mechanical performance polymer high k composites.
机译:本文采用共沉淀法和多元醇法分别合成了球形Ni和纤维状Ni不同形态的Ni颗粒。‥因此,以Ni为导电相的三相渗流复合材料BaTiO通过热成型技术,通过将这些材料在大约190°C的压力下,在3 Mpa的压力下压制15分钟,来制备 3 作为嵌入聚偏二氟乙烯(PVDF)基质中的陶瓷相。通过在1 MHz至1 GHz的高频下对Agilent E4991进行表征,详细研究了填料Ni的形态和含量对Ni-BaTiO 3 -PVDF复合材料的介电响应的影响。 Ni-BaTiO 3 -PVDF纤维复合材料的渗透阈值比球形体系的28%低,约为15%。并且同时,其他的介电特性,例如介电常数k,通过被纤维状Ni颗粒代替的球形Ni导电填料而增强。这项工作可以提供一种新的方法来实现具有低渗透阈值的材料系统,这有利于获得高介电常数和良好的机械性能的聚合物高k复合材料。

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