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A computational investigation on the intramolecular hydrogen bonding interaction and excited state intramolecular proton transfer process in 2-quinolin-2-yl-phenol

机译:2-喹啉-2-基-苯酚分子内氢键相互作用和激发态分子内质子转移过程的计算研究

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摘要

In the present work, we report computational investigation on the photophysics of 2-quinolin-2-yl-phenol (2Q2P) which can function as the basic unit responsive to excited state intramolecular proton transfer (ESIPT) reaction in the polymer framework composed of polyquinoline derivatives. The operation of ESIPT in 2Q2P has been most critically addressed on the lexicon of potential energy surface (PES) across the reaction coordinate and cross-validated from frontier molecular orbital (MO) analysis. Evolution of other geometrical parameters during the course of the ESIPT process in 2Q2P has been crucial to delve into the mechanistic details of the process. Major emphasis of the work is rendered on the analysis of the intramolecular hydrogen bonding (IMHB) interaction in 2Q2P explored by calculation of electron density ρ(r) and the Laplacian ?2ρ(r) at the bond critical point (BCP) using Atoms-In-Molecule (AIM) theory. Topological features, energy densities provided by AIM theory are calculated with ρ(r) for a number of intramolecular H-bond distances. The results suggest that at equilibrium geometry the IMHB interaction in the system (2Q2P) develops certain characteristics typical of covalent interaction. Integrated AIM properties have been applied to delve into the phenomenon of resonance-assisted hydrogen bonding (RAHB). The inter-correlation between aromaticity and RAHB is also discussed in this context.
机译:在目前的工作中,我们报告了对2-喹啉-2-基苯酚(2Q2P)的光物理的计算研究,该化合物可作为由聚喹啉组成的聚合物骨架中的激发态分子内质子转移(ESIPT)反应的基本单位衍生品。 ESIPT在2Q2P中的运行已在势能面(PES)的整个反应坐标上进行了最关键的论述,并通过前沿分子轨道(MO)分析进行了交叉验证。在2Q2P的ESIPT过程中,其他几何参数的演变对于深入研究过程的机械细节至关重要。这项工作的主要重点是通过使用Atoms-计算在键临界点(BCP)处的电子密度ρ(r)和Laplacianα2ρ(r)探索了对2Q2P中分子内氢键(IMHB)相互作用的分析。分子内(AIM)理论。对于许多分子内H键距离,用ρ(r)计算AIM理论提供的拓扑特征,能量密度。结果表明,在平衡几何结构中,系统中的IMHB相互作用(2Q2P)具有某些典型的共价相互作用特征。集成的AIM属性已应用于深入研究共振辅助氢键(RAHB)现象。在这种情况下,还讨论了芳香性和RAHB之间的相互关系。

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