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Selective electromagnetic interference shielding performance and superior mechanical strength of conductive polymer composites with oriented segregated conductive networks

机译:用定向隔离导电网络的导电聚合物复合材料的选择性电磁干扰屏蔽性能和卓越的机械强度

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摘要

Manipulation of the conductive network is essential for the electromagnetic interference (EMI) shielding performance of conductive polymer composites, which have broad application prospects to address the concerns of electromagnetic pollution emitted by modern electronics. In this work, the oriented segregated structure was achieved in carbon nanotube (CNT)/ultrahigh molecular weight polyethylene (UHMWPE) composites via solidphase stretching and the orientation of segregated network was controlled by adopting different draw ratios. Benefiting from the unique oriented segregated structure, the composites delivered prominent EMI shielding performance with intriguing frequency selectivity, which did not occur in conventional segregated composites. Moreover, remarkable mechanical reinforcement was obtained in the oriented segregated composites, which was attributed to the interfacial crystallization along segregated pathways and the formation of highly oriented lamellae. At a draw ratio of 6, the oriented segregated composite with 2 wt% CNTs showed the maximum EMI shielding effectiveness of 33.5 dB and tensile strength of 216.1 MPa, which surpassed the conventional segregated composite by 69.2% and 455.5%, respectively. This effort demonstrates a simple, feasible, and effective approach for the design and fabrication of mechanically robust, bandwidth-selective EMI shielding composites.
机译:导电网络的操纵对于导电聚合物复合材料的电磁干扰(EMI)屏蔽性能是必不可少的,这具有广泛的应用前景,以解决现代电子产品发出的电磁污染问题。在这项工作中,通过固相拉伸通过固相拉伸在碳纳米管(CNT)/超高分子量聚乙烯(UHMWPE)复合材料中实现了取向的隔离结构,并通过采用不同的拉伸比来控制隔离网络的取向。从独特的取向隔离结构受益,复合材料具有突出的EMI屏蔽性能,具有有趣的频率选择性,其在常规隔离复合材料中没有发生。此外,在取向的隔离复合材料中获得了显着的机械加强件,其归因于沿偏析途径的界面结晶和高度取向的薄片的形成。在拉伸比为6中,具有2wt%CNT的定向分离复合材料显示出33.5dB的最大EMI屏蔽效果和216.1MPa的拉伸强度,其分别超过69.2%和455.5%的常规隔离复合材料。这项努力表明了一种简单,可行和有效的方法,用于设计和制造机械稳健,带宽选择性EMI屏蔽复合材料。

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