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Carbon nanotube-nanoporous anodic alumina composite membranes with controllable inner diameters and surface chemistry: Influence on molecular transport and chemical selectivity

机译:具有可控内径和表面化学性质的碳纳米管-纳米多孔阳极氧化铝复合膜:对分子传输和化学选择性的影响

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This work presents the fabrication of carbon nanotube composite membranes with controllable nanotube dimensions (inner diameters and lengths) and surface chemistry and explores their influence on the transport properties and chemical based transport selectivity. These membranes were prepared by growing of vertically aligned multiwalled carbon nanotubes (MWCNTs) inside nanoporous anodic alumina membranes (NAAMs) through a catalyst-free chemical vapour deposition (CVD) approach. The deposition time during CVD process and the length of NAAMs were used to control nanotube dimensions. The thermal annealing and wet and dry oxidation processes were used to control the surface chemistry of inner walls of nanotubes from highly graphitic-hydrophobic to oxygen rich and hydrophilic. The structural features and chemical composition of the prepared membranes are characterised by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and Raman spectroscopy. The influence of the nanotube dimensions and surface chemistry on molecular transport properties of prepared membranes are assessed by analysing the transport of two models molecules with different hydrophilic-hydrophobic and charge properties. The obtained results reveal that the diffusional flux of model molecules through CNTs-NAAMs can be controlled by nanotube dimensions and surface chemistry of graphitic surface and these parameters can be used to tailor their chemical based molecular separation for specific applications. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:这项工作介绍了具有可控制的纳米管尺寸(内径和长度)和表面化学性质的碳纳米管复合膜的制造,并探讨了它们对传输性能和基于化学物质的传输选择性的影响。这些膜是通过无催化剂化学气相沉积(CVD)方法在纳米多孔阳极氧化铝膜(NAAM)内生长垂直排列的多壁碳纳米管(MWCNT)制备而成的。 CVD过程中的沉积时间和NAAM的长度用于控制纳米管的尺寸。使用热退火以及干式和湿式氧化工艺来控制纳米管内壁的表面化学性质,从高石墨疏水性到富氧亲水性。制备的膜的结构特征和化学组成通过扫描电子显微镜(SEM),能量色散X射线光谱(EDX),透射电子显微镜(TEM),X射线光电子光谱(XPS)和拉曼光谱来表征。通过分析具有不同的亲水性,疏水性和电荷性的两种模型分子的迁移,可以评估纳米管尺寸和表面化学性质对制备的膜的分子迁移特性的影响。所得结果表明,模型分子通过CNTs-NAAMs的扩散通量可通过纳米管尺寸和石墨表面的表面化学性质来控制,这些参数可用于调整其基于化学的分子分离以用于特定应用。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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