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Post-Treatments for Multifunctional Property Enhancement of Carbon Nanotube Fibers from the Floating Catalyst Method

机译:浮式催化剂法处理碳纳米管纤维的多功能性能

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We investigated the effects of the synthesis conditions and condensation processes on the chemical compositions and multifunctional performance of the directly spun carbon nanotube (CNT) fibers. On the basis of the optimized synthesis conditions, a two-step post-treatment technique which involved acidification and epoxy infiltration was also developed to further enhance their mechanical and electrical properties. As a result, their tensile strength and Young's modulus increased remarkably by 177% and 325%, respectively, while their electrical conductivity also reached 8235 S/cm. This work may provide a general strategy for the postprocessing optimization of the directly spun CNT fibers. The treated CNT fibers with superior properties are promising for a wide range of applications, such as structural reinforcements and lightweight electric cables.
机译:我们研究了合成条件和缩合工艺对直接纺制碳纳米管(CNT)纤维化学成分和多功能性能的影响。在优化的合成条件的基础上,还开发了涉及酸化和环氧渗透的两步后处理技术,以进一步提高其机械和电学性能。结果,它们的抗张强度和杨氏模量分别显着增加了177%和325%,而它们的电导率也达到了8235S / cm。这项工作可以为直接纺制CNT纤维的后处理优化提供一般策略。经过处理的具有优异性能的CNT纤维有望在广泛的应用中使用,例如结构增强和轻型电缆。

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