材料科学
复合材料
电介质
介电损耗
介电响应
光电子学
作者
Kanyapak Silakaew,Prasit Thongbai
标识
DOI:10.1088/2053-1591/ad2bb4
摘要
Abstract This study delineates the process of fabricating and the results of investigating the dielectric properties of hybrid particles created through the integration of Poly(vinylidene fluoride) (PVDF) filled with RuO 2 coated on BaTiO 3 nanoparticles ( n BT), designated as RuO 2 – n BT. These hybrid particles were successfully synthesized employing a simple and cost – effective solid – state reaction method. The inclusion of RuO 2 – n BT in the PVDF matrix engendered a notable enhancement in its dielectric properties. Notably, a RuO 2 – n BT fraction of 0.5 manifested a dielectric constant ( ε ′) of 107.4 and a dielectric loss tangent (tan δ ) value of 0.062 at 30 °C and 1 kHz. These findings signify the effective role of interfacial polarization occurring between the PVDF matrix and the RuO 2 – n BT hybrid particles, leading to a marked improvement in dielectric attributes. Moreover, the observed low tan δ value indicates the elimination of conductive pathways, an inhibitory effect attributed to the incorporation of RuO 2 – n BT hybrid particles. This study underscores the promising potential of RuO 2 – n BT hybrid particles in fine – tuning and augmenting the dielectric properties of polymer composites, particularly in scenarios necessitating low tan δ and high ε ′ values.
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