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First-principles study of field emission properties of gas adsorption on the carbon nanotubes

机译:碳纳米管吸附气体场发射特性的第一性原理研究

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Carbon-containing gases usually present when preparing carbon nanotubes, and can affect the field emission of carbon nanotubes. Water vapor is also an important kind of gas for field emission, concerned by both experimental and theoretical studies. Under strong electric field, the gas molecules may be decomposed to radicals. Using DMo13 code based on density-functional theory, we calculated the adsorption of the gas molecules CH4, CO and H2O and the CH3 and OH radicals under emission conditions. We found that the H2O and the methyl have advantages to field emission and the CH4, CO and the hydroxyl have disadvantages. The results of H2O and CO are consistent with experiments, and the enhancement of current by CH4 in experiment may be due to the methyl decomposed from the CH4.
机译:制备碳纳米管时通常会存在含碳气体,并且会影响碳纳米管的场发射。水蒸气还是一种用于场发射的重要气体,受到实验和理论研究的关注。在强电场下,气体分子可能会分解为自由基。使用基于密度泛函理论的DMo13代码,我们计算了排放条件下气体分子CH4,CO和H2O以及CH3和OH自由基的吸附。我们发现,H2O和甲基在场发射方面具有优势,而CH4,CO和羟基则具有劣势。 H2O和CO的结果与实验一致,实验中CH4的电流增加可能是由于甲基从CH4分解而引起的。

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