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首页> 外文期刊>Journal of molecular modeling >Exploring hydrogen bond in the excited state leading toward intramolecular proton transfer: Detailed analysis of the structure and charge density topology along the reaction path using QTAIM
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Exploring hydrogen bond in the excited state leading toward intramolecular proton transfer: Detailed analysis of the structure and charge density topology along the reaction path using QTAIM

机译:探索激发态的氢键导致分子内质子转移:使用QTAIM沿反应路径详细分析结构和电荷密度拓扑

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摘要

Excited state intramolecular proton transfer (ESIPT)reaction along the O-H-O hydrogen bond of o-hydroxy benzaldehyde (OHBA), methyl salicylate (MS) and salicylic acid (SA) was investigated by ab-initio quantum chemical calculation and theory of atoms and molecules (QTAIM) for the first time. Variation in several geometric as well as QTAIM parameters along the reaction coordinate was monitored in the fully relaxed excited state potential energy curve (PEC) obtained from intrinsic reaction coordinate (IRC) analysis. Although, the excited state barrier height for the forward reaction (?E0 #) reduces substantially in all the systems, MS and SA do not show any obvious asymmetry for proton transfer. For MS and SA, the crossover of the bond index as well as the lengths of the participating bonds at the saddle point is assigned due to this symmetry in accordance with bond energy - bond order (BEBO) model, which does not hold true in OHBA both in the ground and excited states. Bond ellipticity, covalent and metallic character were examined for different structures along the reaction path within the QTAIM framework. The QTAIM analysis was found to be able to uniquely distinguish between the ground and excited states of the OHBA molecule as well as both determining the effects on the bonding character of adding different substituent groups and differentiating between the ESIPT reactions in the SA and MS molecules.
机译:通过从头算量子化学计算和原子与分子理论研究了沿邻羟基苯甲醛(OHBA),水杨酸甲酯(MS)和水杨酸(SA)的OHO氢键的激发态分子内质子转移(ESIPT)反应QTAIM)。从本征反应坐标(IRC)分析获得的完全松弛的激发态势能曲线(PEC)中,监测了沿反应坐标的几个几何参数以及QTAIM参数的变化。尽管在所有系统中正向反应的激发态势垒高度(ΔE0#)都大大降低了,但是MS和SA对于质子转移没有表现出任何明显的不对称性。对于MS和SA,由于这种对称性,根据键能量-键序(BEBO)模型,分配了键指数的交叉点以及参与点在鞍点处的长度,这在OHBA中不成立无论是处于基态还是处于兴奋状态。在QTAIM框架内沿着反应路径的不同结构检查了键的椭圆率,共价键和金属特性。发现QTAIM分析能够唯一地区分OHBA分子的基态和激发态,以及确定对添加不同取代基的键合特性的影响以及对SA和MS分子中ESIPT反应的区分。

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