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一种用于增强电磁干扰屏蔽的超薄碳织物/石墨烯/聚偏二氟乙烯薄膜。

An ultra-thin carbon-fabric/graphene/poly(vinylidene fluoride) film for enhanced electromagnetic interference shielding.

作者信息

Mei Xiaokang, Lu Longsheng, Xie Yingxi, Wang Wentao, Tang Yong, Teh Kwok Siong

机构信息

School of Mechanical & Automotive Engineering, South China University of Technology, 381#Wushan Road, Guangzhou, 510641, China.

School of Engineering, San Francisco State University, San Francisco, CA 94132, USA.

出版信息

Nanoscale. 2019 Jul 28;11(28):13587-13599. doi: 10.1039/c9nr03603b. Epub 2019 Jul 10.

Abstract

Highly conductive carbon-based fibrous composites have become one of the most sought-after components in the field of electromagnetic interference (EMI) shielding due to their excellent comprehensive performance. In this work, a flexible nonwoven fabric consisting of carbon fibers (CFs) and polypropylene/polyethylene (PP/PE) core/sheath bicomponent fibers (ESFs), known as CEF-NF, is introduced into the graphene (GE)/poly(vinylidene fluoride) (PVDF) nanocomposite obtained by a solution casting method to fabricate a CEF-NF/GE/PVDF film. Disparate microstructures can be clearly observed in CEF-NF/GE/PVDF films with different graphene contents. Thanks to an internal porous network structure formed when the graphene content is high, this film exhibits better electrical conductivity. In the frequency range of 30-1500 MHz, this film can achieve a significantly high EMI shielding effectiveness (EMI-SE) value of about 48.5 dB at tiny thickness and density (1731.40 dB cm g), which are far better than many competitive materials. Moreover, this film exhibits adequate tensile strength and excellent flexibility, as the film's structural form can be retained even after multiple folding processes. In addition, by combining two-dimensional (2D) graphene and one-dimensional (1D) CF, the CEF-NF/GE/PVDF film achieves a remarkable in-plane thermal conductivity of 25.702 W m K, making it an exceptional heat conductor. In summary, our results demonstrate that CEF-NF/GE/PVDF film is an excellent EMI shielding material that is light weight, highly flexible, and mechanically robust with outstanding thermal conductivity, which positions it superbly for applications in next-generation commercial portable electronics.

摘要

高导电碳基纤维复合材料因其优异的综合性能,已成为电磁干扰(EMI)屏蔽领域最受追捧的组件之一。在这项工作中,一种由碳纤维(CFs)和聚丙烯/聚乙烯(PP/PE)芯鞘双组分纤维(ESFs)组成的柔性无纺布,即CEF-NF,被引入通过溶液浇铸法获得的石墨烯(GE)/聚偏二氟乙烯(PVDF)纳米复合材料中,以制备CEF-NF/GE/PVDF薄膜。在具有不同石墨烯含量的CEF-NF/GE/PVDF薄膜中,可以清楚地观察到不同的微观结构。由于在石墨烯含量高时形成的内部多孔网络结构,该薄膜表现出更好的导电性。在30 - 1500 MHz的频率范围内,该薄膜在微小的厚度和密度(1731.40 dB cm g)下可实现约48.5 dB的显著高电磁干扰屏蔽效能(EMI-SE)值,这远远优于许多竞争材料。此外,该薄膜表现出足够的拉伸强度和优异的柔韧性,因为即使经过多次折叠过程,薄膜的结构形式仍可保留。此外,通过将二维(2D)石墨烯和一维(1D)CF相结合,CEF-NF/GE/PVDF薄膜实现了25.702 W m K的显著面内热导率,使其成为一种出色的热导体。总之,我们的结果表明,CEF-NF/GE/PVDF薄膜是一种优异的EMI屏蔽材料,重量轻、高度灵活、机械坚固且具有出色的热导率,这使其非常适合应用于下一代商业便携式电子产品。

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