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CO_2 sorption on substituted carbon materials Computational chemistry studies

机译:替代碳材料上的CO_2吸附计算化学研究

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Theoretical study of sorption of CO_2 on the 4-ring graphene ("unmodified" or N-, O-, and OH-substituted) structures possessing one completely unsaturated edge zigzag site is reported using the DFT (B3LYP/6-31G(d,p)) method. Lactone and heterocyclic complexes (due to thermodynamic favourability) are taken into account. The analysis of theoretical results shows that the enthalpy of reaction strongly depends on the chemical nature, i.e. the position of the doping of atom(s) is crucial. All substitutions do not change or decrease the enthalpy in comparison with the "unmodified" graphene sheet. The well-known theoretical reactivity indices (ionization potential, electron affinity, global softness, and HOMO-LUMO gaps) are calculated for the studied adsorbents in order to explain the above-mentioned tendencies. Finally, the effect of the presence of heteroatoms on the enthalpy of reaction (ΔH~(298)) for all CO_2-heteroatom-doping adsorbent complexes is shown. Thus, carbon dioxide molecules adsorb on the edge plane surface of N-, O-, OH-containing carbon surfaces similarly or much less favourably in comparison with the "unmodified" adsorbents. This confirms some experimental observations.
机译:使用DFT(B3LYP / 6-31G(d, p))方法。考虑到内酯和杂环配合物(由于热力学上的有利性)。对理论结果的分析表明,反应的焓在很大程度上取决于化学性质,即原子的掺杂位置至关重要。与“未改性的”石墨烯片相比,所有取代均不会改变或降低焓。为了解释上述趋势,对所研究的吸附剂计算了众所周知的理论反应性指数(电离势,电子亲和力,整体柔软度和HOMO-LUMO间隙)。最后,显示了杂原子的存在对所有CO_2-杂原子掺杂吸附复合物的反应焓(ΔH〜(298))的影响。因此,与“未改性的”吸附剂相比,二氧化碳分子相似地或不那么有利地吸附在含N,O,OH的碳的边缘平面表面上。这证实了一些实验观察。

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