首页> 外文期刊>ACS applied materials & interfaces >Effect of Thermally Reduced Graphene Sheets on the Phase Behavior, Morphology, and Electrical Conductivity in Poly[(a-methyl styrene)-co-(acrylonitrile)/poly(methyl-methacrylate) Blends
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Effect of Thermally Reduced Graphene Sheets on the Phase Behavior, Morphology, and Electrical Conductivity in Poly[(a-methyl styrene)-co-(acrylonitrile)/poly(methyl-methacrylate) Blends

机译:热还原石墨烯片对聚[(α-甲基苯乙烯)-共-(丙烯腈)/聚(甲基丙烯酸甲酯)共混物的相行为,形态和电导率的影响

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The effects of thermally reduced graphene sheets (TRG) on the phase separation in poly[(α-methyl styrene)-co-(acrylonitrile)]/poly(methyl-methacrylate) blends were monitored using melt rheology, conductivity spectroscopy, and electron microscopic techniques. The TRG were incorporated in the single-phase material by solution mixing. The composite samples were then allowed to phase separate in situ. The thermodynamics of phase separation have been investigated by monitoring the evolution of the storage modulus (G') as a function of temperature as the system passes through the binodal and the spinodal lines of the phase diagram. The phase separation kinetics were probed by monitoring the evolution of G' as a function of time at a quench depth well in the spinodal region. It was observed that TRG significantly influenced the phase separation temperature, the shape of the phase diagram and the rate of phase separation. The state of dispersion of TRG in the blends was assessed using electron microscopy and conductivity spectroscopy measurements. Interestingly, the composite samples (monophasic) were virtually insulators at room temperature, whereas highly conducting materials were obtained as a result of phase separation in the biphasic materials.
机译:使用熔体流变学,电导率光谱和电子显微镜监测热还原石墨烯片(TRG)对聚[(α-甲基苯乙烯)-共-(丙烯腈)] /聚(甲基丙烯酸甲酯)共混物中相分离的影响。技术。通过溶液混合将TRG掺入到单相材料中。然后使复合样品原位相分离。当系统通过相图的双斜线和旋节线时,通过监测储能模量(G')随温度的变化,研究了相分离的热力学。通过在旋节线区域的淬火深度井中监测G'随时间的变化来探测相分离动力学。观察到TRG显着影响相分离温度,相图的形状和相分离速率。 TRG在共混物中的分散状态使用电子显微镜和电导率光谱测量进行评估。有趣的是,复合样品(单相)在室温下实际上是绝缘体,而由于双相材料中的相分离,获得了高导电材料。

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