首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Mapping the transition from free-standing vertically-aligned Fe3C-filled carbon nanotube films to entangled randomly-oriented carbon nanotube buckypapers in presence of a great excess of ferrocene
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Mapping the transition from free-standing vertically-aligned Fe3C-filled carbon nanotube films to entangled randomly-oriented carbon nanotube buckypapers in presence of a great excess of ferrocene

机译:在大量二茂铁存在的情况下,绘制从垂直放置的,垂直排列的,填充有Fe3C的碳纳米管薄膜到缠结的随机取向的碳纳米管巴克纸的过渡图

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Self-organized vertically aligned or entangled randomly-oriented carbon nanotubes films filled with ferromagnetic Fe-based phases have recently attracted a great attention for numerous applications as potential electrodes. However the large difference between their synthesis -i) methods, -ii) parameters or -iii) the specific hydrocarbons-requirement have posed many challenges in the growth-selection of one of these film-morphologies. Another important issue is the brittleness of the first type of films which is generally due to low intimate contacts between each carbon nanotube comprised in the vertically aligned films and limits their direct implementation into applications. We propose an advanced low-flow rate chemical vapour deposition approach which allows the selection of either a free-standing flexible film comprising vertically aligned carbon nanotubes filled with large quantities of Fe3C particles or a freestanding flexible buckypaper comprising entangled randomly-oriented carbon nanotubes films partially filled with Fe3C through the simple control of the evaporation temperature of the used precursors consisting of large quantities of ferrocene and very low concentrations of dichlorobenzene. The morphological, cross sectional and structural properties of the obtained nanostructures are investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:自组织垂直排列或缠结的随机取向的碳纳米管薄膜填充有铁磁性铁基相,最近作为电位电极在众多应用中引起了极大的关注。然而,它们的合成-i)方法,-ii)参数或-iii)特定碳氢化合物需求之间的巨大差异给这些薄膜形态之一的生长选择提出了许多挑战。另一个重要的问题是第一类薄膜的脆性,这通常是由于垂直排列的薄膜中包含的每个碳纳米管之间的紧密接触所致,并限制了它们在应用中的直接实现。我们提出了一种先进的低流量化学气相沉积方法,该方法允许选择包含垂直对齐的碳纳米管的独立柔性膜,该碳纳米管填充有大量的Fe3C颗粒,或者选择包含部分缠结的随机取向的碳纳米管膜的独立柔性巴克纸通过简单控制所用前体的蒸发温度将其填充到Fe3C中,该前体由大量二茂铁和极低浓度的二氯苯组成。研究了获得的纳米结构的形态,横截面和结构特性。 (C)2016 Elsevier Ltd.保留所有权利。

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