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首页> 外文期刊>Journal of molecular modeling >CO2 adsorption in nitrogen-doped single-layered graphene quantum dots: a spectroscopic investigation
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CO2 adsorption in nitrogen-doped single-layered graphene quantum dots: a spectroscopic investigation

机译:氮掺杂单层石墨烯量子点的CO 2吸附:光谱调查

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In this work, we investigate the adsorption process of CO2 in graphene quantum dots from the electronic structure and spectroscopic properties point of view. We discuss how a specific doping scheme could be employed to further enhance the adsorbing properties of the quantum dots. This is evaluated by considering the depth of the potential well, the spectroscopic constants, and the lifetime of the compound. Electronic structure calculations are carried out in the scope of the density functional theory (DFT), whereas discrete variable representation (DVR) and Dunham methodologies are employed to obtain spectroscopic constants and hence the lifetimes of the systems. Our results suggest that nitrogen-doped graphene quantum dots are promising structures as far as sensing applications of CO2 are concerned.
机译:在这项工作中,我们研究了来自电子结构和光谱特性的石墨烯量子点中CO2的吸附过程。 我们讨论如何使用特定的掺杂方案来进一步增强量子点的吸附性能。 通过考虑潜在孔的深度,光谱常数和化合物的寿命来评估这一点。 在密度泛函理论(DFT)的范围内进行电子结构计算,而采用离散可变表示(DUN)和Dunham方法来获得光谱常数并因此获得系统的寿命。 我们的研究结果表明,目前,氮掺杂石墨烯量子点是有前途的结构,只要CO2的感测应用。

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