首页> 外文期刊>The Journal of Chemical Physics >Temperature and pressure dependences of tunneling rate constant:Density-functional theory potential-energy surface for H-atom transfer in the fluorene-acridine system
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Temperature and pressure dependences of tunneling rate constant:Density-functional theory potential-energy surface for H-atom transfer in the fluorene-acridine system

机译:隧穿速率常数的温度和压力依赖性:芴-ac体系中氢原子转移的密度泛函理论势能面

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摘要

Temperature and pressure dependences of rate constants for solid phase tunneling reactions are analytically considered within the framework of modified theory of radiationless transitions,taking into account the intermolecular and soft intramolecular promotive vibrations of reagents.This treatment allows us to describe theoretically the process of atomic tunneling and the effect of temperature on the potential barrier and reorganization of the reagents.The influence of external pressure appears in our treatment as a static reduction of widths and heights of the potential barrier with hydrostatic compression of the matrix,and also as an increase of frequencies of promotive vibrational modes owing to anharmonicity.The theoretical results are used to interpret experimental data concerning the effect of temperature and pressure on the hydrogen-atom tunneling in the fluorene-acridine reaction system.It has been shown that by taking into account the contributions from reorganization of the reagents,which statically reduce the tunneling barrier and are related to four types of promotive vibrations (translational,librational,and two low-frequency intramolecular modes at 95 and 238 cm~(-1)),one can reproduce the experimental data available in the literature.The parameters of the reaction system required for this analysis are calculated from two-dimensional potential-energy surfaces generated at the DFT-B3LYP/6-31G* level.
机译:在修正的无辐射跃迁理论的框架内,考虑到试剂的分子间和分子内激励振动,在固相隧穿反应速率常数的温度和压力依赖性上进行了分析。这种处理方法使我们能够从理论上描述原子隧穿的过程在我们的处理中,外部压力的影响表现为随着基质的静水压缩而静态减小势垒的宽度和高度,以及频率增加理论结果被用于解释有关温度和压力对芴-啶反应体系中氢原子隧穿的影响的实验数据。重组静态减少隧穿势垒的eagents与四种类型的激励振动有关(在95和238 cm〜(-1)处的平移,自由振动和两种低频分子内模式),其中一种可以重现从DFT-B3LYP / 6-31G *水平产生的二维势能面计算出该分析所需的反应系统参数。

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