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首页> 外文期刊>Journal of Applied Physics >Understanding dynamic percolation mechanisms in carbonaceous polymer nanocomposites through impedance spectroscopy: Experiments and modeling
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Understanding dynamic percolation mechanisms in carbonaceous polymer nanocomposites through impedance spectroscopy: Experiments and modeling

机译:通过阻抗谱了解碳质聚合物纳米复合材料中的动态渗透机理:实验和建模

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Dynamic percolation refers to the impressive increase in conductivity in polymers filled with a constant filler content as a function of annealing time. We present a detailed study of the driving forces for this phenomenon. The organization of carbon nanotubes in a polymer melt is probed with a.c. conductivity. In contrast with the static percolation studied as a function of the filler content, two peaks are observed in the relative permittivity. We show that this new feature results from two distinct filler auto assembly mechanisms. The first one is ascribed to the relaxation of macromolecules and could be eliminated using the proper thermal treatment. The second mechanism is observed later in time. It is likely to correspond to a diffusion process of the carbonaceous filler similar to a phase separation. A phenomenological model is finally proposed to describe the changes in dispersion and distribution states with annealing time.
机译:动态渗滤是指填充有恒定填料含量的聚合物的电导率随退火时间的变化而显着增加。我们对这种现象的驱动力进行了详细研究。聚合物熔体中碳纳米管的组织用交流电探测。电导率。与作为填料含量的函数研究的静态渗透相反,在相对介电常数中观察到两个峰。我们展示了此新功能是由两种不同的填充器自动组装机制导致的。第一个归因于大分子的松弛,可以通过适当的热处理消除。稍后会观察到第二种机制。类似于相分离,这可能对应于碳质填料的扩散过程。最后提出了一种现象学模型来描述分散态和分布态随退火时间的变化。

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