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首页> 外文期刊>Journal of Electronic Materials >Enhanced Electrical and Thermal Performance of Wet-Laid Based Graphite-Laminated Carbon Non-woven Composite
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Enhanced Electrical and Thermal Performance of Wet-Laid Based Graphite-Laminated Carbon Non-woven Composite

机译:基于湿铺的石墨层压碳无纺布复合材料的增强电气和热性能

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摘要

This study presents the facile synthesis of an electrically conductive carbon-based non-woven composite using a wet-laid bonding process. A highly stable composite of graphite nanoplatelets (GnPs) was attached to the non-woven fabric to be used for thermal and electrical applications. The GnPs were coated through lamination or attached using a modified wet-laid method. Different carbon fibre and graphite nanoplatelets and their composites were prepared. Their properties were investigated using field emission-scanning electron microscopy, wide-angle x-ray diffraction, Raman spectroscopy, electrochemical, thermal, and electromagnetic interference shielding analyser. The laminated structure showed a very high electrical conductivity of 13,960.5 S/m, thermal distribution of 30.11mm(2)/s, and electromagnetic interference shielding efficiency of more than 99.99%. The prepared composite also showed good flexibility and the potential for use in wearable devices. Thus, it can be said that this highly functional composite non-woven design provides a foundation for the development of more functional applications in e-textiles as next generation electrical devices.
机译:该研究介绍了使用湿式粘接工艺的导电碳基非织造复合物的容纳合成。石墨纳米纳米片(GNPS)的高度稳定的复合物连接到无纺布上,以用于热和电气应用。通过层压涂覆GNP或使用改进的湿式铺设方法附着。制备不同的碳纤维和石墨纳米孔和它们的复合材料。使用现场发射扫描电子显微镜,广角X射线衍射,拉曼光谱,电化学,热和电磁干扰屏蔽分析仪进行研究。层压结构显示出极高的电导率为13,960.5 s / m,热分布30.11mm(2)/ s,电磁干扰屏蔽效率超过99.99%。制备的复合材料还显示出良好的灵活性和可穿戴设备的可能性。因此,可以说,这种高效的复合非织造设计提供了在E-Textiles中作为下一代电气设备开发更多功能应用的基础。

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