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Influence of hyperbranched copper phthalocyanine grafted carbon nanotubes on the dielectric and rheological properties of polyarylene ether nitriles

机译:超支化酞菁铜接枝碳纳米管对聚亚芳基醚腈介电和流变性能的影响

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摘要

Novel hyperbranched copper phthalocyanine covalently grafted carbon nanotube/polyarylene ether nitrile (HBCuPc-CNT/PAEN) flexile composite films were prepared via solution casting. The CNTs are enwrapped by a functional intermediate HBCuPc thin layer which forms a rough shell on the surface of the CNTs to ensure a good dispersion of CNTs in the PAEN matrix. The dielectric layer (HBCuPc-CNTs) is intercalated by insulating layers (pure PAEN, acting as the isolating layer). Due to the high capacitance of the dielectric layer and the effective blocking of the mobility of free charge carriers by the insulating layers, the polymer-based composite films exhibit not only a high permittivity but also an extremely low dielectric loss and excellent breakdown strength. SEM images show that HBCuPc-CNTs are perfectly embedded in the matrix and no pull-out phenomenon can be observed. In addition, the rheological properties of the resulting composite films also indicate that the grafted CNTs present a good dispersion and strong interactions with the PAEN resin, thus resulting in a significant improvement of the mechanical and thermal properties of the PAEN composite films.
机译:通过溶液流延制备了新型的超支化酞菁铜共价接枝碳纳米管/聚亚芳基醚腈(HBCuPc-CNT / PAEN)柔性复合膜。 CNT被功能性中间HBCuPc薄层包裹,该薄层在CNT的表面上形成粗糙的外壳,以确保CNT在PAEN基质中的良好分散。介电层(HBCuPc-CNT)被绝缘层(纯PAEN,用作隔离层)插入。由于介电层的高电容以及绝缘层有效地阻止了自由电荷载流子的迁移,因此聚合物基复合膜不仅表现出高介电常数,而且表现出极低的介电损耗和出色的击穿强度。 SEM图像显示HBCuPc-CNTs完全嵌入基质中,没有观察到拉出现象。另外,所得复合膜的流变性质还表明,接枝的CNT呈现出良好的分散性和与PAEN树脂的强相互作用,因此导致了PAEN复合膜的机械和热性能的显着改善。

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