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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Slippage-inhibiting effect of interfacial cross-linking of nanotubes by defluorination on the mechanical properties of free-standing multi-walled carbon nanotube yarns: Comparison with individual multi-walled carbon nanotubes
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Slippage-inhibiting effect of interfacial cross-linking of nanotubes by defluorination on the mechanical properties of free-standing multi-walled carbon nanotube yarns: Comparison with individual multi-walled carbon nanotubes

机译:通过脱水对纳米管界面交联对独立式多壁碳纳米管纱线机械性能的抑制抑制效果:与各个多壁碳纳米管的比较

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Carbon nanotube yarns (CNTYs) spun only by twisting have a low mechanical strength due to the slippage of individual CNTs. This hinders the practical applications of CNTYs. Here, we studied the slippage-inhibiting effect of the interfacial cross-linking of the nanotubes by defluorination on the mechanical properties of free-standing MWCNTYs and compared with the fracture tensile strength of the individual defluorinated MWCNTs. The mechanical properties of defluorinated MWCNTYs increased with increasing annealing temperature, and MWCNTYs defluorinated at 800 degrees C under a pressure of 76 Pa (p-deF(800)-MWCNTYs) exhibited an average specific fracture strength of 0.69 N/tex and an average specific fracture stiffness of 103.2 N/tex, with high flexibility. As the fracture tensile strength of individual defluorinated MWCNTs was low, the high strength of the p-deF(800)-MWCNTYs was attributed to the cross-linking of the active carbon atoms in the outer nanotubes with those of the adjacent nanotubes through sp(2)C and sp(3)C bonds, which led to the transfer of load to the yarns. Thus, the results of our study highlight the importance of good balance between the defects of CNTs and cross-linking between CNTs. (C) 2021 Elsevier Ltd. All rights reserved.
机译:由于单个碳纳米管的滑移,仅通过加捻纺丝的碳纳米管纱线(CNTs)的机械强度较低。这阻碍了碳纳米管的实际应用。在这里,我们研究了脱氟后纳米管界面交联对独立多壁碳纳米管力学性能的抑制作用,并与单个脱氟多壁碳纳米管的断裂拉伸强度进行了比较。脱氟MWCNTYs的力学性能随着退火温度的升高而增加,在800℃下,在76 Pa压力下脱氟的MWCNTYs(p-deF(800)-MWCNTYs)的平均比断裂强度为0.69 N/tex,平均比断裂刚度为103.2 N/tex,具有较高的柔韧性。由于单个脱氟MWCNTs的断裂抗拉强度较低,因此p-deF(800)-MWCNTYs的高强度归因于外部纳米管中的活性碳原子通过sp(2)C和sp(3)C键与相邻纳米管中的活性碳原子交联,从而将负载转移到纱线上。因此,我们的研究结果强调了碳纳米管缺陷和碳纳米管交联之间良好平衡的重要性。(c)2021爱思唯尔有限公司保留所有权利。

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