Wang Jiaojiao, Zhao Jingna, Qiu Lin, Li Fengcheng, Xu Changle, Wu Kunjie, Wang Pengfei, Zhang Xiaohua, Li Qingwen
Division of Advanced Nano-Materials and Key Laboratory of Multifunctional Nanomaterials and Smart Systems, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences Suzhou 215123 China
Nano Science and Technology Institute, University of Science and Technology of China Suzhou 215123 China.
RSC Adv. 2020 May 18;10(32):18715-18720. doi: 10.1039/d0ra02675a. eCollection 2020 May 14.
High alignment and densification of carbon nanotubes (CNTs) are of key importance for strengthening CNT fibers, whereas direct stretching has a very limited effect when CNTs are highly entangled. We report that by lubricating CNT surfaces with viscous alcohols, the relative motion between CNTs improves because of the reduced sliding energy barrier; thus non-stretched regions are effectively eliminated. Owing to the very efficient optimization of the assembled structure, the stretched CNT fibers exhibited an average tensile strength of 2.33 GPa (1.82 N per tex) and modulus of 70.1 GPa (54.8 N per tex). Other fundamental properties, such as electrical and thermal conductivities, were also remarkably improved. Such a strategy can be readily used for manufacturing high-performance CNT assemblies and composites.
碳纳米管(CNT)的高度取向和致密化对于增强CNT纤维至关重要,然而当CNT高度缠结时,直接拉伸的效果非常有限。我们报告称,通过用粘性醇润滑CNT表面,由于滑动能垒降低,CNT之间的相对运动得到改善;因此有效地消除了未拉伸区域。由于组装结构的非常有效的优化,拉伸后的CNT纤维表现出平均抗拉强度为2.33 GPa(每特克斯1.82 N),模量为70.1 GPa(每特克斯54.8 N)。其他基本性能,如电导率和热导率,也得到了显著改善。这种策略可以很容易地用于制造高性能的CNT组件和复合材料。