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Surface State of Carbon Materials and Accumulation of Hydrogen in Multiwalled Carbon Nanotubes

机译:碳材料的表面状态和多壁碳纳米管中氢的积累

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Literature data on the nature of oxide structures formed on the surface and in the bulk of carbon materials, including carbon black, multiwalled nanotubes (MWNTs), and carbon fiber are generalized. Positive and negative effects of oxide structures on the properties of MWNTs and the possibilities of their practical utilization are considered. The probable nature of the surface and bulk oxide structures is discussed. The effect of the cathodic polarization value and the nature and composition of the electrolyte on the accumulation of hydrogen in MWNTs directly applied on a steel membrane or involved in an Epoxy-resin-based com-posite is studied. In an acidic environment (x M HCl + (1 - x) M LiCl), the amount of hydrogen accumulated by carbon nanotubes in a Fe/MWNT system is shown to vary in a range of 3-13.8 wt % and increase with an increase in the acidity of the environment at the cathodic shift of the potential by 0.2 V from the steady-state value (in the absence of external field). In an alkaline environment (1 M K.OH), the amount of absorbed hydrogen is 3.5-15 wt % depending on the cathodic polarization (up to 0.4 V) and the weight of multiwalled nanotubes.
机译:关于在表面和大部分碳材料(包括炭黑,多壁纳米管(MWNT)和碳纤维)中形成的氧化物结构的性质的文献数据得到了概括。研究了氧化物结构对多壁碳纳米管性能的正负影响及其实际应用的可能性。讨论了表面和本体氧化物结构的可能性质。研究了阴极极化值以及电解质的性质和组成对直接施加在钢膜上或涉及环氧树脂基复合材料的多壁碳纳米管中氢积累的影响。在酸性环境(x M HCl +(1- x)M LiCl)中,Fe / MWNT系统中碳纳米管累积的氢气量显示在3-13.8 wt%的范围内变化,并随增加而增加在环境酸度下,电位从稳态值(在没有外部电场的情况下)阴极移动了0.2V。在碱性环境(1 M K.OH)中,取决于阴极极化(最高0.4 V)和多壁纳米管的重量,吸收的氢量为3.5-15 wt%。

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