Carbon nanotubes based composites with high dielectric constant and low loss

I. Madni, Shuhui Yu, Rong Sun
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引用次数: 3

Abstract

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/BaTiO3/Polymer composites are studied. Ball-milling equipment was used to fabricate mechanically treated composite fillers which were composed of BaTiO3 nanoparticles and MWNTs. The hybrid films fabricated by incorporating these composite fillers in a Bismaleimidetriazine 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 BaTiO3 was very low, i.e. 1∶10 MWNTs to BaTiO3 content. We studied the effect of various loading ratios of MWNTs to BaTiO3, 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/BaTiO3 as fillers can be improved significantly by tailoring the ratio of CNT to BaTiO3 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.
高介电常数低损耗碳纳米管基复合材料
近年来,人们发现含有导电颗粒的复合材料的介电常数有了显著的提高。多壁碳纳米管(MWNTs)由于其宽高比大和独特的物理性能,特别是电学和机械性能而被选择作为导电填料。本文研究了功能化多壁碳纳米管/BaTiO3/聚合物复合材料的介电性能。采用球磨设备制备了由纳米二氧化钛和纳米碳管组成的经机械处理的复合填料。在双马来酰亚胺三嗪基质中加入这些复合填料制备的杂化膜具有高于50的高介电常数(Dk)和显著的低损耗,在10 Wt. %填料负载下小于0.02。然而,碳纳米管与BaTiO3的比例很低,为1∶10 mwnt / BaTiO3。我们研究了不同负载率mwnt对BaTiO3的影响,从而找出了杂化膜的渗透阈值。比较了材料成分、介电常数和损耗以及介电界面形貌等特性。研究了球磨对其性能的影响。实验结果表明,通过调整碳纳米管与BaTiO3的比例和改进球磨工艺,可以显著提高MWNT/BaTiO3杂化膜的介电性能。该复合填料与双马来酰亚胺-三嗪(BT树脂)基体组成的新型杂化膜可作为嵌入式电容器材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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