材料科学
纳米复合材料
复合材料
电介质
石墨烯
渗透(认知心理学)
压缩成型
动态力学分析
渗流阈值
氧化物
介电损耗
电阻率和电导率
聚合物
纳米技术
光电子学
模具
生物
电气工程
神经科学
冶金
工程类
作者
P.K. Sandhya,M. S. Sreekala,Guijun Xian,M. Padmanabhan,Nandakumar Kalarikkal,Sabu Thomas
摘要
Abstract Graphene oxide was reduced (RGO) by naturally abundant potato starch and incorporated in phenol formaldehyde resin (PF). The PF/RGO nanocomposites were successfully fabricated by the combination of solution processing and compression molding. Here, nanocomposites composed of 0.05 wt% to 1 wt% RGO were prepared. The incorporation of RGO into the PF matrix was significantly affecting the dynamic mechanical characteristics of the nanocomposites such as storage and loss modulus and tan δ . The degree of entanglement ( N ), effectiveness of filler ( β f ), reinforcement efficiency factor ( r ), cross‐link density ( v c ), and adhesion factor ( A ) were evaluated from the modulus values. Besides, the phase behavior of the nanocomposites was analyzed with help of Cole–Cole plot. The electrical properties of the nanocomposites have been studied concerning change in filler loading and frequency. The dielectric constant ( ε ′), dielectric loss ( ε ″) and conductivity were increased with increase in wt% of filler for the entire range of frequencies (20 Hz to 30 MHz) and the results showed that the electrical conductivity of the nanocomposites can be explained by percolation theory. The Maxwell‐Garnet model was employed to calculate the theoretical dielectric constant of PF/RGO nanocomposites.
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