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Carbon Nanotubes Based Composites with High Dielectric Constant and Low Loss

机译:基于介电常数和低损耗的碳纳米管基复合材料

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Recently, an extraordinary increase has been found in dielectric constant of the composites containing electrical conducting granules. Multiwalled carbon nanotubes (MWNTs) are selected as the conducting filler due to their large aspect ratio and unique physical properties, in particular electrical and mechanical. In this research, the dielectric properties of the functionalized multiwalled carbon nanotubes/BaTiO_3/Polymer composites are studied. Ball-milling equipment was used to fabricate mechanically treated composite fillers which were composed of BaTiO_3 nanoparticles and MWNTs. The hybrid films fabricated by incorporating these composite fillers in a Bismaleimide- triazine matrix had a high dielectric constant (Dk) above 50 and a significantly low loss, less than 0.02 at 10 Wt. % filler loading. However, the ratio of CNT to BaTiO_3 was very low, i.e. 1:10 MWNTs to BaTiO_3 content. We studied the effect of various loading ratios of MWNTs to BaTiO_3, which led to find out the percolation threshold in the hybrid film. Characteristics including material components, dielectric constant and loss, and topography at dielectric interfaces are compared. The effects of ball milling were investigated. The experimental results suggest that the dielectric properties of the hybrid films containing MWNT/BaTiO_3 as fillers can be improved significantly by tailoring the ratio of CNT to BaTiO_3 and refining the ball-milling process. This novel hybrid film composed of the composite filler and Bismaleimide-triazine (BT resin) matrix can be used as embedded capacitor material.
机译:最近,已经在含有电导颗粒的复合材料的介电常数中发现了非凡的增加。由于其大的纵横比和独特的物理性质,特别是电气和机械,选择多壁碳纳米管(MWNT)作为导电填料。在该研究中,研究了官能化多壁碳纳米管/ BATIO_3 /聚合物复合材料的介电性质。球磨机用于制造机械处理的复合填料,该复合填料由BATIO_3纳米颗粒和MWNT构成。通过将这些复合填料掺入双聚酰亚胺 - 三嗪基质中制造的混合膜具有高于50的高介电常数(DK),并且在10wt下小于0.02的显着低损失。 %填充加载。然而,CNT至BATIO_3的比例非常低,即BATIO_3含量为1:10MWNT。我们研究了MWNTs对BATIO_3各种加载比的影响,这导致了混合膜中的渗透阈值。比较了包括材料成分,介电常数和损耗的特性,以及介电接口的形貌。研究了球磨的影响。实验结果表明,通过根据BATIO_3的比例定制CNT与BATIO_3的比例,可以显着提高含有MWNT / BATIO_3作为填料的混合膜的介电性质。该新型杂化膜由复合填料和双酰亚胺 - 三嗪(BT树脂)基质组成,可用作嵌入式电容器材料。

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