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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Advanced dielectric polymer nanocomposites by constructing a ternary continuous structure in polymer blends containing poly(methyl methacrylate) (PMMA) modified carbon nanotubes
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Advanced dielectric polymer nanocomposites by constructing a ternary continuous structure in polymer blends containing poly(methyl methacrylate) (PMMA) modified carbon nanotubes

机译:通过在包含聚甲基丙烯酸甲酯(PMMA)改性的碳纳米管的聚合物共混物中构建三元连续结构,来制备高级介电聚合物纳米复合材料

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摘要

A nanocomposite with ultra-low percolation threshold and high dielectric performance is prepared by controlling the localization of multiwalled carbon nanotubes (MWNTs) in one phase of a ternary continuous polymer blend system through melt processing. Polystyrene (PS), poly(vinylidene fluoride) (PVDF), and poly(methyl methacrylate) (PMMA) can form a ternary continuous structure when the volume fractions of PS, PVDF and PMMA are 70 vol%, 20 vol%, and 10 vol%, respectively. The PS is a continuous matrix (sea-phase) whereas the other two phases are interconnected threads (the PVDF is situated as the core while the PMMA is the shell, and the thickness of the PMMA shell is about 1 nm). Adding PMMA could improve the compatibility between the PS and PVDF components. Selective distribution of MWNTs in the PMMA shell is achieved through a combination of PMMA modified MWNTs and appropriate processing procedures. The composite shows an ultra-low percolation threshold of ca. 0.3 wt%. When the weight fraction of PMMA modified MWNTs is 0.4 wt%, the dielectric constant of the composite is as high as 182 (at 100 Hz), which is about 60 times higher than that of a pure PS matrix. The composite's dielectric properties have excellent temperature stability. This approach can provide a new and low-cost route to design high-performance dielectric materials with ultra-low percolation thresholds.
机译:通过控制熔融过程中多壁碳纳米管(MWNTs)在三元连续聚合物共混体系的一相中的定位,制备了具有超低渗透阈值和高介电性能的纳米复合材料。当PS,PVDF和PMMA的体积分数分别为70 vol%,20 vol%和10时,聚苯乙烯(PS),聚偏二氟乙烯(PVDF)和聚甲基丙烯酸甲酯(PMMA)可以形成三元连续结构。分别为vol%。 PS是一个连续的矩阵(海相),而其他两个相是相互连接的线程(PVDF定位为核心,而PMMA为外壳,PMMA外壳的厚度约为1 nm)。添加PMMA可以改善PS和PVDF组件之间的兼容性。通过结合PMMA改性的MWNT和适当的加工程序,可以实现MWNT在PMMA壳中的选择性分布。该复合材料的超低渗滤阈值为ca。 0.3重量%。当PMMA改性的MWNTs的重量分数为0.4 wt%时,复合材料的介电常数高达182(在100 Hz时),约为纯PS基质的介电常数的60倍。复合材料的介电性能具有出色的温度稳定性。这种方法可以提供一种新的低成本途径来设计具有超低渗透阈值的高性能介电材料。

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