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首页> 外文期刊>Journal of Materials Science >Analyzing the frequency and temperature dependences of the ac conductivity and dielectric analysis of reduced graphene oxide/epoxy polymer nanocomposites
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Analyzing the frequency and temperature dependences of the ac conductivity and dielectric analysis of reduced graphene oxide/epoxy polymer nanocomposites

机译:分析氧化石墨烯/环氧聚合物纳米复合材料的交流电导率和介电分析的频率和温度依赖性

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A series of composite materials was fabricated by mixing reduced graphene oxide (rGO) powder particles in an epoxy resin. In this paper, we analyze impedance measurements on these materials over broad frequency and temperature ranges. The real and imaginary parts of the effective complex impedance are well fitted to the Cole-Cole equation. The frequency dependence of the ac conductivity follows Jonscher's law with relaxation processes characterized by a broad distribution of relaxation times. The imaginary part of the effective electric impedance collapses onto a single master curve using a single characteristic frequency as a scaling parameter. We find that the electrical properties of the samples are strongly influenced by graphene oxide content. Below percolation threshold, the ac transport can be interpreted as due to electron hopping. Further, we find that the frequency-dependent effective impedance measurements overlap on a single master curve in the range of temperatures explored, showing that a single electrical conduction mechanism is operative. Close and above percolation threshold, the ac conduction originates from both electron tunneling and capacitive paths among the rGO nanoparticles in the polymer bulk.
机译:通过在环氧树脂中将还原的石墨烯(RGO)粉末颗粒混合来制造一系列复合材料。在本文中,我们在宽频频率和温度范围内分析这些材料的阻抗测量。有效复杂阻抗的真实和虚部的部件适合于COLE-COLE方程。交流电导率的频率依赖性跟随Jonscher的定律,放松过程,其特征在于广泛分布的松弛时间。有效电阻的虚部使用单个特征频率作为缩放参数折叠到单个主曲线上。我们发现样品的电性能受到石墨烯含量的强烈影响。低于渗透阈值,可以将AC传输解释为由于电子跳跃。此外,我们发现频率相关的有效阻抗测量值在探索温度范围内的单个主曲线上重叠,表明单个导电机构是可操作的。关闭且高于渗透阈值,AC传导源自聚合物体积中的RGO纳米颗粒中的电子隧道和电容路径。

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