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Novel exfoliated graphite nanoplates/syndiotactic polystyrene composites prepared by solution-blending

机译:溶液共混制备新型片状石墨纳米板/间规聚苯乙烯复合材料

摘要

Novel exfoliated graphite nanoplates (xGNPs)/syndiotactic polystyrene (sPS) composites were prepared by a simple and effective solution-blending method. The uniform dispersion of xGNPs in sPS matrix was confirmed by scanning electron microscopy. The effect of xGNPs on sPS crystallization behavior was investigated by wide angle X-ray diffraction and differential scanning calorimetry. It was found that the existence of xGNPs increased the crystallization ability of sPS and facilitated the formation of the β phase crystalline structure. By adding 10 wt.% of xGNPs, the increase in the onset degradation temperature of the xGNPs/sPS composite could reach 12°C. The AC electrical conductivity at 1000 Hz increased from 3.8 × 10-10 S/m for neat sPS to 2.25 × 10-4 S/m for xGNPs/sPS composite containing 2.93 vol.% of xGNPs. Moreover, the thermal conductivity of the xGNPs/sPS composite containing 8.26 vol.% has been significantly improved from 0.21 to 1.63 W/m·K when compared with that of pure sPS.
机译:通过一种简单有效的溶液共混方法制备了新型片状石墨纳米板(xGNPs)/间规聚苯乙烯(sPS)复合材料。通过扫描电子显微镜确认xGNP在sPS基质中的均匀分散。通过广角X射线衍射和差示扫描量热法研究了xGNPs对sPS结晶行为的影响。发现xGNP的存在增加了sPS的结晶能力并促进了β相晶体结构的形成。通过添加10重量%的xGNP,xGNP / sPS复合材料的起始降解温度的升高可以达到12℃。 1000 Hz时的交流电导率从纯sPS的3.8×10-10 S / m增加到包含2.93 vol。%xGNP的xGNP / sPS复合材料的2.25×10-4 S / m。此外,与纯sPS相比,包含8.26vol。%的xGNPs / sPS复合材料的热导率从0.21显着提高到1.63W / m·K。

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