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Multifunctional Properties of Cyanate Ester Composites with SiO2 Coated Fe3O4 Fillers

机译:SiO2包覆Fe3O4填料的氰酸酯复合材料的多功能性能。

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SiO2 coated Fe3O4 submicrometer spherical particles (a conducting core/insulating shell configuration) are fabricated using a hydrothermal method and are loaded at 10 and 20 vol % into a bisphenol E cyanate ester matrix for synthesis of multifunctional composites. The dielectric constant of the resulting composites is found to be enhanced over a wide frequency and temperature range while the low dielectric loss tangent of the neat cyanate ester polymer is largely preserved up to 160 °C due to the insulating SiO2 coating on individual conductive Fe3O4 submicrometer spheres. These composites also demonstrate high dielectric breakdown strengths at room temperature. Dynamic mechanical analysis indicates that the storage modulus of the composite with a 20 vol % filler loading is twice as high as that of neat resin, but the glass transition temperature considerably decreases with increasing filler content. Magnetic measurements reveal a large saturation magnetization and negligibly low coercivity and remanent magnetization in these composites.
机译:使用水热法制备涂覆有SiO2的Fe3O4亚微米球形颗粒(导电核/绝缘壳结构),然后将其以10和20%的体积百分比装载到双酚E氰酸酯基体中,以合成多功能复合材料。发现所得复合材料的介电常数在很宽的频率和温度范围内都有所提高,而纯氰酸酯聚合物的低介电损耗正切在高达160°C的温度下得到了很大程度的保持,这是由于在单个导电Fe3O4亚微米级上的绝缘SiO2涂层领域。这些复合材料在室温下也显示出高的介电击穿强度。动态力学分析表明,填料含量为20%(体积)的复合材料的储能模量是纯树脂的两倍,但随着填料含量的增加,玻璃化转变温度显着降低。磁性测量结果表明,这些复合材料的饱和磁化强度大,矫顽力和剩余磁化强度可忽略不计。

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