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多环芳烃在石墨炔上吸附的建模:一种改进的 Lennard-Jones 公式

Modeling the Adsorption of Polycyclic Aromatic Hydrocarbons on Graphynes: An Improved Lennard-Jones Formulation.

作者信息

James Anto, Swathi Rotti Srinivasamurthy

机构信息

School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram (IISER TVM), Vithura, Thiruvananthapuram 695551, India.

出版信息

J Phys Chem A. 2022 Jun 9;126(22):3472-3485. doi: 10.1021/acs.jpca.2c01777. Epub 2022 May 24.

DOI:10.1021/acs.jpca.2c01777
PMID:35609299
Abstract

Research on the development of theoretical methodologies for modeling noncovalent interactions governing the adsorption of polycyclic aromatic hydrocarbons (PAHs) on graphene and other two-dimensional materials is being intensely pursued in recent times. Highly accurate empirical potentials have emerged as a viable alternative to first-principles calculations for performing large-scale simulations. Herein, we report exploration of the potential energy surfaces for the adsorption of cata-condensed and peri-condensed PAHs on graphynes (GYs) using the improved Lennard-Jones (ILJ) potential. Initially, the ILJ potential is parametrized against benchmark electronic structure calculations performed on a selected set of PAH-GY complexes using dispersion-corrected density functional theory. The accuracy of the parametrization scheme is then assessed by a comparison of the adsorption features predicted from the ILJ potential with those computed using electronic structure calculations. The potential energy profiles as well as the single point energy calculations and geometry reoptimizations performed on the minimum-energy configurations predicted by the ILJ potential for a broader range of PAH-GY complexes provided a validation of the parametrization scheme. Finally, by an extrapolation of the PAH adsorption energies on various GYs, we estimated the interlayer cohesion energies for the van der Waals bilayer heterostructures of GYs with graphene to be in the range of 25-50 meV/atom.

摘要

近年来,关于用于模拟多环芳烃(PAHs)在石墨烯及其他二维材料上吸附的非共价相互作用的理论方法发展的研究正在紧锣密鼓地进行。高精度经验势已成为进行大规模模拟的第一性原理计算的可行替代方法。在此,我们报告了使用改进的 Lennard-Jones(ILJ)势对催化稠合和周边稠合 PAHs 在石墨炔(GYs)上吸附的势能面的探索。首先,针对使用色散校正密度泛函理论对一组选定的 PAH-GY 复合物进行的基准电子结构计算,对 ILJ 势进行参数化。然后,通过比较从 ILJ 势预测的吸附特征与使用电子结构计算得到的吸附特征,评估参数化方案的准确性。对更广泛的 PAH-GY 复合物,在 ILJ 势预测的最低能量构型上进行的势能分布以及单点能量计算和几何结构重新优化,验证了参数化方案。最后,通过外推各种 GYs 上的 PAH 吸附能,我们估计了 GYs 与石墨烯的范德华双层异质结构的层间内聚能在 25 - 50 meV/原子范围内。

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