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Influence of lengths of millimeter-scale single-walled carbon nanotube on electrical and mechanical properties of buckypaper

机译:毫米级单壁碳纳米管长度对巴克纸电学和力学性能的影响

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摘要

The electrical conductivity and mechanical strength of carbon nanotube (CNT) buckypaper comprised of millimeter-scale long single-walled CNT (SWCNT) was markedly improved by the use of longer SWCNTs. A series of buckypapers, fabricated from SWCNT forests of varying heights (350, 700, 1,500μm), showed that both the electrical conductivity (19 to 45S/cm) and tensile strength (27 to 52MPa) doubled. These improvements were due to improved transfer of electron and load through a reduced number of junctions for longer SWCNTs. Interestingly, no effects of forest height on the thermal diffusivity of SWCNT buckypapers were observed. Further, these findings provide evidence that the actual SWCNT length in forests is similar to the height.
机译:通过使用较长的SWCNT,可以显着提高由毫米级长的单壁CNT(SWCNT)组成的碳纳米管(CNT)巴基纸的电导率和机械强度。由高度不同(350、700、1,500μm)的SWCNT森林制成的一系列巴基纸显示,电导率(19至45S / cm)和抗张强度(27至52MPa)都翻了一番。这些改进归因于更长的SWCNT通过减少的结数改善了电子和负载的传输。有趣的是,没有观察到森林高度对SWCNT buckypapers的热扩散率的影响。此外,这些发现提供了证据,表明森林中的实际SWCNT长度与高度相似。

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