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Diameter selection of carbon nanotubes in polymer/ SWCNT nanowire arrays fabricated by template wetting

机译:通过模板润湿制备的聚合物/ SWCNT纳米线阵列中碳纳米管的直径选择

摘要

© 2014 Wiley-VCH Verlag GmbH & Co. KGaA. Arrays of polymer/SWCNT (single-wall carbon nanotube) nano-wires supported on a residual nanocomposite film are prepared by melt wetting using porous anodic aluminum oxide (AAO) as a template. The aggregation parameter of SWCNTs extracted from the analysis of their Raman radial breathing modes gives the highest value for native SWCNTs, indicating that they tend to organize into bundles giving rise to a high degree of aggregation. However, the lowest value achieved at the interface between the nanocomposite film and the nanoarray is explained considering that the forces acting during infiltration are able to disrupt the SWCNT bundles inducing nanotube dispersion. In addition, scanning the nanoarrays along the nanowires length by Raman microscopy has shown a diameter selection of SWCNTs by the AAO membrane. The results reported in this work reveal that it is possible to fabricate arrays of nanowires with homogeneous SWCNT distribution along tens of microns, optimizing nanotube dispersion.
机译:©2014 Wiley-VCH Verlag GmbH&Co. KGaA。通过使用多孔阳极氧化铝(AAO)作为模板的熔体润湿来制备支撑在残余纳米复合膜上的聚合物/ SWCNT(单壁碳纳米管)纳米线的阵列。从其拉曼径向呼吸模式的分析中提取的SWCNT的聚集参数给出了天然SWCNT的最大值,表明它们倾向于组织成束,从而引起高度聚集。然而,考虑到在渗透过程中作用的力能够破坏诱导纳米管分散的SWCNT束,解释了在纳米复合膜和纳米阵列之间的界面处获得的最低值。另外,通过拉曼显微镜沿着纳米线长度扫描纳米阵列已经显示了通过AAO膜对SWCNT的直径选择。这项工作中报道的结果表明,可以制造沿数十微米均匀SWCNT分布的纳米线阵列,从而优化纳米管的分散性。

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