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水簇吸附在多环芳烃上:能量学和构象动力学。

Water clusters adsorbed on polycyclic aromatic hydrocarbons: energetics and conformational dynamics.

机构信息

Laboratoire de Chimie et Physique Quantiques LCPQ/IRSAMC, Université de Toulouse (UPS) and CNRS, 118 Route de Narbonne, F-31062 Toulouse, France.

出版信息

J Chem Phys. 2013 May 21;138(19):194309. doi: 10.1063/1.4805015.

Abstract

In this work, we present some classical molecular dynamics (MD) simulations and finite temperature infrared (IR) spectra of water clusters adsorbed on coronene (C24H12), a compact polycyclic aromatic hydrocarbon (PAH). The potential energy surface is obtained within the self-consistent-charge density-functional based tight-binding approach with modifications insuring the correct description of water-water and water-PAH interactions. This scheme is benchmarked for the minimal energy structures of (C24H12)(H2O)n (n = 3-10) against density-functional theory (DFT) calculations and for the low-energy isomers of (H2O)6 and (C6H6)(H2O)3 against correlated wavefunction and DFT calculations. A detailed study of the low energy isomers of (C24H12)(H2O)3, 6 complexes is then provided. On-the-fly Born-Oppenheimer MD simulations are performed in the temperature T range 10-350 K for (C24H12)(H2O)n (n = 3-7) complexes. The description of the evolution of the systems with T is provided with emphasis on (C24H12)(H2O)n (n = 3,6). For T in the range 50-150 K, isomerisation processes are observed and when T increases, a solid-to-liquid phase-change like behavior is shown. The desorption of one water molecule is frequently observed at 300 K. The isomerisation processes are evidenced on the finite temperature IR spectra and the results are presented for (C24H12)(H2O)n (n = 3,6). A signature for the edge-coordination of the water cluster on the PAH is also proposed.

摘要

在这项工作中,我们展示了一些经典的分子动力学(MD)模拟和水团簇吸附在蔻烯(C24H12)上的有限温度红外(IR)光谱,蔻烯是一种紧凑的多环芳烃(PAH)。势能面是在自洽电荷密度泛函的基础上通过紧束缚方法获得的,该方法经过了修改,以确保正确描述水-水和水-PAH 相互作用。该方案是针对(C24H12)(H2O)n(n = 3-10)的最小能量结构与密度泛函理论(DFT)计算进行了基准测试,并针对(H2O)6和(C6H6)(H2O)3的低能异构体与相关波函数和 DFT 计算进行了基准测试。然后对(C24H12)(H2O)3、6 配合物的低能异构体进行了详细研究。在 10-350 K 的温度范围内对(C24H12)(H2O)n(n = 3-7)配合物进行了实时 Born-Oppenheimer MD 模拟。提供了随 T 演化的系统描述,重点是(C24H12)(H2O)n(n = 3,6)。当 T 在 50-150 K 范围内时,观察到了异构化过程,当 T 增加时,表现出了类似于固-液相变的行为。在 300 K 时经常观察到一个水分子的脱附。在有限温度 IR 光谱中证实了异构化过程,并给出了(C24H12)(H2O)n(n = 3,6)的结果。还提出了水团簇在 PAH 上的边缘配位的特征。

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