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碳纳米管和石墨烯纳米带涂层导电凯夫拉纤维。

Carbon nanotube and graphene nanoribbon-coated conductive Kevlar fibers.

机构信息

Department of Chemistry, Rice University, MS 222, 6100 Main Street, Houston, Texas 77005, USA.

出版信息

ACS Appl Mater Interfaces. 2012 Jan;4(1):131-6. doi: 10.1021/am201153b. Epub 2011 Dec 14.

Abstract

Conductive carbon material-coated Kevlar fibers were fabricated through layer-by-layer spray coating. Polyurethane was used as the interlayer between the Kevlar fiber and carbon materials to bind the carbon materials to the Kevlar fiber. Strongly adhering single-walled carbon nanotube coatings yielded a durable conductivity of 65 S/cm without significant mechanical degradation. In addition, the properties remained stable after bending or water washing cycles. The coated fibers were analyzed using scanning electron microcopy and a knot test. The as-produced fiber had a knot efficiency of 23%, which is more than four times higher than that of carbon fibers. The spray-coating of graphene nanoribbons onto Kevlar fibers was also investigated. These flexible coated-Kevlar fibers have the potential to be used for conductive wires in wearable electronics and battery-heated armors.

摘要

通过层层喷涂制备了导电碳材料涂覆的凯夫拉纤维。聚氨酯被用作凯夫拉纤维和碳材料之间的夹层,将碳材料结合到凯夫拉纤维上。强烈附着的单壁碳纳米管涂层产生了 65 S/cm 的持久导电性,而机械降解不明显。此外,在弯曲或水洗循环后,其性能仍然稳定。使用扫描电子显微镜和结测试对涂层纤维进行了分析。所生产的纤维的结效率为 23%,是碳纤维的四倍多。还研究了将石墨烯纳米带喷涂到凯夫拉纤维上。这些柔性涂覆的凯夫拉纤维有可能用于可穿戴电子产品和电池加热盔甲中的导电丝。

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