用功能密度理论和反应分子动力学研究氢饱和多孔石墨烯片对二氧化碳的吸附及其与氮的分离

Zahra Negaresh, M. Fazli
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引用次数: 0

摘要

研究了二氧化碳分子在四种不同孔径的饱和氢多孔石墨烯片和无孔石墨烯片上的吸附,并与氮分子在其上的吸附进行了比较。本研究采用反应分子动力学,考虑了化学键形成和解离的可能性以及极性的影响。该研究表明,所有多孔石墨烯片和非空腔石墨烯片对二氧化碳分子的吸收比氮分子多,可以用来分离这两种气体。然而,空腔的大小和形状对气体分子在这些板上的吸附没有显著的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of carbon dioxide adsorption on H-saturated porous graphene sheet and its separation from nitrogen using functional density theory and reactive molecular dynamics
The adsorption of carbon dioxide molecules on four H-saturated porous graphene sheets with different pore sizes and a poreless graphene sheet was investigated and compared with the adsorption of nitrogen molecules on them. Reactive molecular dynamics was used in this study, which took into account the possibility of chemical bond formation and dissociation as well as the effects of polarity. This research demonstrates that all porous graphene sheets and non-cavity graphene sheets absorb carbon dioxide molecules more than nitrogen molecules and can be used to separate these two gases. However, the size and shape of the cavities have no significant impact on gas molecule adsorption on these plates.
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