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The effect of reduced graphene oxide intercalated hybrid organoclay on the dielectric properties of polyvinylidene fluoride nanocomposite films

机译:氧化石墨烯插层杂化有机粘土对聚偏二氟乙烯纳米复合薄膜介电性能的影响

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In present investigation, reduced graphene oxide sandwiched organoclay (Clay@r-GO) was introduced as conductive nanofillers to promote the electroactive beta-phase as well as conducting network within polyvinylidene fluoride (PVDF) via solution casting technique. The composition of Clay@r-GO nanohybrid filler was formulated in the weight ratio of 1: 20 of graphene oxide and organoclay after observing the independent contribution of rGO and organoclay to the dielectric property of PVDF. PVDF/Clay@r-GO nanocomposite films were designed with various wt% of Clay@r-GO filler. The fabricated PVDF/Clay@r-GO nanocomposite film was characterized with SEM, TEM, FTIR and XRD. Electron microscopic results revealed that only 5 wt% of Clay@r-GO hybrid nanostructures was effective to inhibit the formation nonpolar alpha crystal, whereas; FTIR analysis showed the similar to 80% transformation of beta-phase in PVDF/Clay@r-GO nanocomposite film with incorporation of only 2 wt% Clay@r-GO hybrid filler. With 2 wt% of nanohybrid filler, thermal stability of PVDF/Clay@r-GO nanocomposite film was highly improved with a char residue of 41.37% at 700 degrees C. Dielectric study reveals that only 2 wt% hybrid nanofillers was effective to impart high dielectric permittivity (epsilon'similar to 102 at 1 Hz) as well as low dielectric loss ( 1), whereas; a optimum permittivity (epsilon'similar to 433 at 1 Hz) is observed for 15 wt% loading. Therefore, the fabricated PVDF/Clay@r-GO nanocomposite film may be used as advanced dielectric materials for real life application.
机译:在目前的研究中,还原氧化石墨烯夹心有机粘土(Clay @ r-GO)被引入作为导电纳米填料,以通过溶液浇铸技术促进电活性β相以及聚偏二氟乙烯(PVDF)内的导电网络。在观察rGO和有机粘土对PVDF介电性能的独立贡献后,以1:20的氧化石墨烯和有机粘土的重量比配制了Clay @ r-GO纳米混合填料的组成。设计了PVDF / Clay @ r-GO纳米复合材料薄膜,其中包含各种重量百分比的Clay @ r-GO填料。用SEM,TEM,FTIR和XRD对制备的PVDF / Clay @ r-GO纳米复合薄膜进行了表征。电子显微镜结果显示,只有5 wt%的Clay @ r-GO杂化纳米结构可有效抑制非极性α晶体的形成,而FTIR分析表明,仅掺入2 wt%的Clay @ r-GO杂化填料,PVDF / Clay @ r-GO纳米复合膜中β相的转化率接近80%。使用2 wt%的纳米杂化填料,PVDF / Clay @ r-GO纳米复合膜的热稳定性得到了极大的改善,在700摄氏度下的残炭残留率为41.37%。介电研究表明,只有2 wt%的杂化纳米填料可以有效地赋予聚合物较高的粘度。介电常数(ε类似于1 Hz时为102)以及低介电损耗(<1),而;对于15wt%的负载,观察到最佳的介电常数(ε在1Hz下类似于433)。因此,制备的PVDF / Clay @ r-GO纳米复合薄膜可以用作现实生活中的高级介电材料。

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