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ANALYSIS OF FLUID IN HYDROTHERMAL CARBON NANOTUBES

机译:碳纳米管中的流体分析

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摘要

Understanding of the interaction of water-based liquids with carbon at the nanoscale is of great importance for exploring the potential of carbon nanotubes in nanofluidic applications. Using hydrothermal synthesis, hydrophilic multiwall carbon nanotubes filled with an aqueous fluid have been produced. These closed tubes were synthesized from an equilibrated C-H-O fluid, in the presence of Ni catalyst, at 730-800℃ under 60-100 MPa pressure. The equilibrium fluid composition, as estimated using Gibbs energy minimization analysis, was 85.2% H_2O, 7.4% CH_4 and 7.4% CO_2. High-resolution analysis of the tube contents shows that the denser fluid is enriched with oxygen, while the lighter phase is oxygen-poor. The presence of oxygen on the outer surface of the tube suggests that tube walls are oxygen (OH) terminated. This may explain the observed hydrophilic behavior of the nanotubes.
机译:了解水基液体与纳米级碳之间的相互作用对于探索碳纳米管在纳米流体应用中的潜力非常重要。使用水热合成,已经制备了填充有水性流体的亲水性多壁碳纳米管。在Ni催化剂存在下,在730-800℃,60-100 MPa压力下,由平衡的C-H-O流体合成这些密闭管。使用吉布斯能量最小化分析估计的平衡流体组成为85.2%H_2O,7.4%CH_4和7.4%CO_2。试管内容物的高分辨率分析显示,稠密的流体富含氧气,而轻相则贫氧。管的外表面上存在氧气表明管壁被氧气(OH)封端。这可以解释观察到的纳米管的亲水行为。

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