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单环碳环在石墨烯上的吸附:通过连续介质模型揭示的能量学

Adsorption of Monocyclic Carbon Rings on Graphene: Energetics Revealed via Continuum Modeling.

作者信息

Kalathingal Mahroof, Owais Cheriyacheruvakkara, Praveen Roy Devaraj Sundararaj, Swathi Rotti Srinivasamurthy

机构信息

School of Chemistry and Centre for Computation, Modelling and Simulation (CCMS), Indian Institute of Science Education and Research Thiruvananthapuram (IISER-TVM), Vithura, Thiruvananthapuram 695551, India.

出版信息

ACS Omega. 2018 Jul 9;3(7):7542-7554. doi: 10.1021/acsomega.8b00378. eCollection 2018 Jul 31.

Abstract

Gas-phase spectroscopic detection of tiny carbon clusters is a recent success story in the area of carbon cluster research. However, experimental production and isolation of these clusters are extremely difficult because of their high reactivity. One possibility to isolate the generated clusters would be to deposit them on graphene and to desorb them for subsequent use. One of the pertinent questions toward realizing this would be the energetics of the adsorption process. Therefore, in this work, the energetics for the adsorption of the monocyclic carbon rings (C with = 10, 12, 14, 16, 18, 20, and 22) on a graphene sheet are investigated using the analytical approaches, developed earlier by Hill and co-workers. The adsorption process here is driven by the noncovalent interactions between the carbon rings and the graphene sheet. The analyses of the interaction energies as a function of both the vertical distance and the rotational angle ϕ are performed in order to determine the preferred orientations, equilibrium positions, and binding energies for the adsorption of various carbon rings on graphene. We find that the preferred orientation of the rings with respect to the graphene sheet is the parallel orientation. The results from continuum, discrete-continuum, and discrete models are in good agreement. Further, computations using density functional theory and quantum mechanics/molecular mechanics approaches are performed, and comparisons of the computed energetics with the data from the models are reported. Finally, we highlight the scope and the limitations of the analytical models.

摘要

气相光谱法检测微小碳簇是碳簇研究领域最近的一个成功案例。然而,由于这些簇的高反应活性,其实验制备和分离极其困难。分离生成的簇的一种可能性是将它们沉积在石墨烯上,然后解吸以供后续使用。实现这一点的一个相关问题是吸附过程的能量学。因此,在这项工作中,我们使用希尔及其同事早些时候开发的分析方法,研究了单环碳环((n = 10)、(12)、(14)、(16)、(18)、(20)和(22))在石墨烯片上的吸附能量学。这里的吸附过程是由碳环与石墨烯片之间的非共价相互作用驱动的。对相互作用能作为垂直距离(z)和旋转角度(\varphi)的函数进行分析,以确定各种碳环在石墨烯上吸附的优选取向、平衡位置和结合能。我们发现,环相对于石墨烯片的优选取向是平行取向。连续介质模型、离散 - 连续介质模型和离散模型的结果吻合良好。此外,我们还进行了密度泛函理论和量子力学/分子力学方法的计算,并报告了计算得到的能量学与模型数据的比较。最后,我们强调了分析模型的范围和局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78f1/6644541/e05ec47261a5/ao-2018-00378p_0001.jpg

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