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首页> 外文期刊>Journal of Electronic Materials >Composites Based on Core-Shell Structured HBCuPc@CNTs-Fe3O4 and Polyarylene Ether Nitriles with Excellent Dielectric and Mechanical Properties
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Composites Based on Core-Shell Structured HBCuPc@CNTs-Fe3O4 and Polyarylene Ether Nitriles with Excellent Dielectric and Mechanical Properties

机译:基于核 - 壳结构HBCUPC @ CNTS-Fe3O4和聚芳基醚腈的复合材料,具有出色的电介质和机械性能

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摘要

Core-shell structured magnetic carbon nanotubes (CNTs-Fe3O4) coated with hyperbranched copper phthalocyanine (HBCuPc) (HBCuPc@CNTs-Fe3O4) hybrids were prepared by the solvent-thermal method. The results indicated that the HBCuPc molecules were decorated on the surface of CNTs-Fe3O4 through coordination behavior of phthalocyanines, and the CNTs-Fe3O4 core was completely coaxial wrapped by a functional intermediate HBCuPc shell. Then, polymer-based composites with a relatively high dielectric constant and low dielectric loss were fabricated by using core-shell structured HBCuPc@CNTs-Fe3O4 hybrids as fillers and polyarylene ether nitriles (PEN) as the polymer matrix. The cross-sectional scanning electron microscopy (SEM) images of composites showed that there is almost no agglomeration and internal delamination. In addition, the rheological analysis reveals that the core-shell structured HBCuPc@CNTs-Fe3O4 hybrids present better dispersion and stronger interface adhesion with the PEN matrix than CNTs-Fe3O4, thus resulting in significant improvement of the mechanical, thermal and dielectric properties of polymer-based composites.
机译:通过溶剂 - 热法制料,涂覆有超胆囊铜酞菁(HBCUPC @ CNTS-Fe3O4)杂种的核壳结构磁性碳纳米管(CNTS-Fe3O4)。结果表明,通过酞菁的配位行为在CNTS-Fe 3 O 4的表面上装饰了HBCUPC分子,CNTS-Fe3O4核心是通过功能性中间体HBCUPC壳包裹的完全同轴。然后,通过使用核 - 壳结构HBCUPC @ CNTS-FE3O4杂交物作为聚合物基质,通过使用核 - 壳结构的HBCUPC @ CNTS-FE3O4杂交物制造具有相对高介电常数和低介电损耗的聚合物基复合材料。复合材料的横截面扫描电子显微镜(SEM)图像显示几乎没有凝聚和内部分层。此外,流变分析表明,核心壳结构HBCUPC @ CNTS-Fe3O4杂种与比CNTS-Fe3O4的笔基质具有更好的分散和更强的界面粘附,从而显着改善了聚合物的机械,热和介电性能的显着改善基于复合材料。

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