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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Adsorption of hydrogen on normal and pentaheptite single wall carbon nanotubes
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Adsorption of hydrogen on normal and pentaheptite single wall carbon nanotubes

机译:氢在正庚烷和五庚烷单壁碳纳米管上的吸附

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摘要

Density functional calculations of the physisorption of molecular hydrogen and the dissociative atomic chemisorption on the external surface of hexagonal and pentaheptite carbon nanotubes, have been carried out. Physisorption binding energies are near 100 meV/molecule and are similar on metallic and semiconducting nanotubes. Full coverage of the nanotube with one molecule per graphitic hexagon decreases the binding energy per molecule. Chemisorption binding energies per H atom are larger on pentaheptites than on hexagonal carbon nanotubes. The molecular physisorption and dissociative chemisorption states on pentaheptites have very similar total energies (some chemisorbed states are even slightly more stable than the physisorbed states), while on hexagonal carbon nanotubes molecular physisorption is more stable than dissociative chemisorption. However, a substantial energy barrier has to be overcome to go from physisorption to dissociative chemisorption in both types of nanotubes.
机译:已经进行了分子氢的物理吸附和六方和五庚碳碳纳米管外表面的离解原子化学吸附的密度泛函计算。物理吸附结合能接近100 meV /分子,在金属和半导体纳米管上相似。每个石墨六边形一个分子完全覆盖纳米管会降低每个分子的结合能。与五方碳纳米管相比,五碳原子上每个H原子的化学吸附结合能更大。五碳原子上的分子物理吸附和解离化学吸附态具有非常相似的总能量(某些化学吸附态甚至比物理吸附态稍稳定),而在六边形碳纳米管上,分子物理吸附比解离化学吸附更为稳定。然而,在两种类型的纳米管中,从物理吸附到解离化学吸附都必须克服巨大的能量障​​碍。

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