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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Relationship between Mechanical and Electrical Properties of Continuous Polymer-Free Carbon Nanotube Fibers by Wet-Spinning Method and Nanotube-Length Estimated by Far-Infrared Spectroscopy
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Relationship between Mechanical and Electrical Properties of Continuous Polymer-Free Carbon Nanotube Fibers by Wet-Spinning Method and Nanotube-Length Estimated by Far-Infrared Spectroscopy

机译:湿纺法制备无聚合物碳纳米管连续纤维的机械和电学性质与远红外光谱法估计纳米管长度之间的关系

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摘要

Neat carbon nanotube (CNT) fibers produced by wet spinning methods offers a potential for high-strength and electrically conductive lightweight materials. For improving their performances, it is necessary to understand how each manufacturing process affects the raw CNTs and implicates the effects in the fiber properties. Recently, we found that the lengths of the clean CNT channels can be estimated by far-infrared (FIR) spectroscopy based on the plasmon resonance model. In this paper, the relationship between the mechanical properties and electric conductivities of the neat CNT fibers, and the lengths of the constituent CNTs are systematically studied by using different types of single-walled CNTs (SWCNTs) with various diameters and different dispersing times. Irrespective of the type of CNTs or the tube diameters, Young moduli, fracture strengths, and electric conductivities of the CNT fibers were found to be related to the CNT lengths estimated from the FIR spectra. The results prove that the evaluation of CNT length by the FIR spectroscopy is a highly useful method to optimize the processing conditions as well as to select the proper CNTs for fabricating high-performance CNT-based materials.
机译:通过湿纺方法生产的纯碳纳米管(CNT)纤维为高强度和导电轻质材料提供了潜力。为了提高其性能,有必要了解每个制造过程如何影响原始的CNT,并牵涉到纤维性能的影响。最近,我们发现可以基于等离振子共振模型通过远红外(FIR)光谱估计干净的CNT通道的长度。本文通过使用不同直径和分散时间的不同类型的单壁碳纳米管(SWCNT),系统地研究了纯净碳纳米管纤维的机械性能和导电率之间的关系以及组成碳纳米管的长度。无论CNT的类型或管的直径如何,发现CNT纤维的杨氏模量,断裂强度和电导率都与根据FIR光谱估计的CNT长度有关。结果证明,通过FIR光谱法评估CNT长度对于优化加工条件以及选择合适的CNT来制造高性能CNT基材料是非常有用的方法。

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