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The First Principles Study of Li, Al and Ca Doped Zigzag(7,0) Single Walled Carbon Nanotube 被引量:1

The First Principles Study of Li, Al and Ca Doped Zigzag(7,0) Single Walled Carbon Nanotube
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摘要 We use the ab initio density functional theory to calculate the band structure, density of states, charge transfer, charge density difference, binding energy and vibration frequency. We can see that the conduction band through the Fermi level include SWNT/H_2/Li, SWNT/H_2/Al and SWNT/H_2/Ca, which shows a kind of metallic character. The charge distribution and contour plots of charge difference density of ion/H_2/SWNT show charge transfer between ion and H_2 molecules rather than between H_2 and H_2. Meanwhile, the interaction between Al, Ca and H_2 is weaker than that of Li. We can also prove that the ion is the primary reason to the increase of adsorption energy of hydrogen molecule in SWNT. Finally, we calculate the vibration frequency and don't find any imaginary frequency, which proves that the(7,0) SWNT is more stable. We use the ab initio density functional theory to calculate the band structure, density of states, charge transfer, charge density difference, binding energy and vibration frequency. We can see that the conduction band through the Fermi level include SWNT/H_2/Li, SWNT/H_2/Al and SWNT/H_2/Ca, which shows a kind of metallic character. The charge distribution and contour plots of charge difference density of ion/H_2/SWNT show charge transfer between ion and H_2 molecules rather than between H_2 and H_2. Meanwhile, the interaction between Al, Ca and H_2 is weaker than that of Li. We can also prove that the ion is the primary reason to the increase of adsorption energy of hydrogen molecule in SWNT. Finally, we calculate the vibration frequency and don't find any imaginary frequency, which proves that the(7,0) SWNT is more stable.
作者 张亚飞 张红
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2016年第5期731-739,共9页 结构化学(英文)
基金 supported by the National Natural Science Foundation of China(11474207 and 11374217)
关键词 hydrogen storage carbon nanotube binding energy density functional theory hydrogen storage carbon nanotube binding energy density functional theory
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