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Improved dielectric properties for chemically functionalized exfoliated graphite nanoplates/syndiotactic polystyrene composites prepared by a solution-blending method

机译:通过溶液共混法制备的化学功能化片状石墨纳米片/间规聚苯乙烯复合材料的介电性能得到改善

摘要

Exfoliated graphite nanoplates (xGNPs) were chemically functionalized by the 1,3 dipolar cycloaddition reaction of azomethine ylides. The introduction of organic groups on the external graphitic layers of xGNPs was confirmed by Fourier-transform infrared spectroscope, scanning electron microscope, transmission electron microscope, and thermal gravimetric analyzer. The resultant functionalized xGNPs (f-xGNPs) could be suspended in N-methyl-2-pyrrolidinone after ultrasonic treatment, which facilitated their homogeneous dispersion in syndiotactic polystyrene (sPS) matrix to form f-xGNPs/sPS composites by a solution-blending method. It was found that the existence of f-xGNPs increased the crystallization temperature but reduced the crystallization degree of sPS due to their strong interfacial interaction with sPS matrix. The dependences of electrical and dielectric properties of f-xGNPs/sPS composites on concentration of f-xGNPs and frequency were investigated. When the concentration of f-xGNPs is 10 wt.%, the electrical conductivity and the dielectric constant of f-xGNPs/sPS composites were 1.5¡Ñ10-7 S/m and 36.4 at 1000 Hz, respectively, while the corresponding values of sPS were 3.8¡Ñ10-10 S/m and 2.83, respectively. The enhanced and stable dielectric constant of f-xGNPs/sPS composites could be ascribed to the well dispersion of f-xGNPs in sPS matrix, resulting in the formation of a large number of microcapacitors.
机译:脱落的石墨纳米板(xGNPs)通过偶氮甲亚胺的1,3偶极环加成反应进行化学功能化。通过傅立叶变换红外光谱仪,扫描电子显微镜,透射电子显微镜和热重分析仪证实了xGNPs外部石墨层上有机基团的引入。超声处理后,可以将所得的功能化xGNPs(f-xGNPs)悬浮在N-甲基-2-吡咯烷酮中,这有助于它们通过间质混合法均匀地分散在间规聚苯乙烯(sPS)基质中,从而形成f-xGNPs / sPS复合材料。发现f-xGNPs的存在由于其与sPS基质的强界面相互作用而提高了sPS的结晶温度但降低了sPS的结晶度。研究了f-xGNPs / sPS复合材料的电和介电性能对f-xGNPs浓度和频率的依赖性。当f-xGNPs的浓度为10 wt。%时,在1000 Hz下,f-xGNPs / sPS复合材料的电导率和介电常数分别为1.5×10-7 S / m和36.4,而相应的sPS值分别为3.8×10-10 S / m和2.83。 f-xGNPs / sPS复合材料的增强而稳定的介电常数可以归因于f-xGNPs在sPS基质中的良好分散,从而形成了大量的微电容器。

著录项

  • 作者

    He F; Lam KH; Fan J; Chan LH;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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