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Physisorption to chemisorption transition of H2S on carbon nanocone induced by decoration of Be2O2 cluster

机译:Be2O2团簇的修饰诱导碳纳米锥上H2S从物理吸附到化学吸附的转变

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We investigated geometric and electronic properties of pristine and Be2O2-decorated carbon nanocones (CNCs) in the presence and absence of an H2S molecule using density functional calculations. It was found that the H2S molecule is physisorbed on the pristine nanocone, but it presents much higher reactivity toward the decorated CNC by Be2O2 cluster. The addition of more H2S molecules has also been considered on the Be2O2/CNC surface. With the increase of H2S coverage, the interaction between H2S molecules and Be2O2/CNC becomes weaker, and up to four H2S molecules can be chemisorbed on the cone, in which adsorption energies ranged from -27.21 to -10.28 kcal/mol at the B3LYP/6-31G(d) level of theory. The results also indicate that decoration of the Be2O2 cluster on the surface of the cone induces some changes in electronic properties of the cone and its E-g is changed after the adsorption of H2S molecule.
机译:我们使用密度泛函计算研究了存在和不存在H2S分子时原始和Be2O2装饰的碳纳米锥(CNC)的几何和电子性质。已发现,H2S分子被物理吸附在原始的纳米锥上,但是通过Be2O2团簇,它对装饰后的CNC具有更高的反应性。在Be2O2 / CNC表面也考虑了添加更多的H2S分子。随着H2S覆盖率的增加,H2S分子与Be2O2 / CNC之间的相互作用变得更弱,并且最多可对4个H2S分子进行化学吸附,其中B3LYP /的吸附能范围为-27.21至-10.28 kcal / mol。 6-31G(d)理论水平。结果还表明,在锥体表面上装饰Be2O2簇会引起锥体的电子性质发生某些变化,并且在H2S分子吸附后其E-g发生变化。

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