DFT Study of Intermolecular Proton Exchange with Some Derivatives of Benzoic Acids

A. Kurmanova, F. Abilkanova, I. Pustolaikina, Sergey N. Nikolskiy
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Abstract

A theoretical study of proton transfer dynamics in complexes of some substituted benzoic acids with 3,6-di-tert-butyl-2-hydroxyphenoxyl (DTBPO) radical is presented. To elucidate the transfer mechanism, reaction pathways for various complexes of benzoic acid derivatives with DTBPO were modeled. The calculations were performed by the DFT method at the UB3LYP/6-31G+(d, p) level of theory using QST3, IRC proce-dures, in vacuum and toluene medium (PCM solvation model). Geometric and kinetic parameters of com-plexes with o-, p-, and m-isomers of nitrobenzoic and chlorobenzoic acids were calculated. Theoretically es-timated activation barrier of 29-30 kJ/mol turned out to be approximately 30 % higher than the previously ob-tained experimental data. It was noted that in the case of o-isomers of aromatic acids the coplanarity of the transition state structure is violated, in contrast to the initial state. This leads to a change in the proton transfer mechanism. The dynamics of charge distribution, dipole moment and electrostatic potential in the studied complexes were analyzed. Based on the calculated data, it was shown that the studied intermolecular proton exchange process occurs throughout Hydrogen Atom Transfer (HAT), and not throughout Proton-Coupled Electron Transfer (PCET) mechanism.
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苯甲酸衍生物分子间质子交换的DFT研究
本文对一些取代苯甲酸与3,6-二叔丁基-2-羟基苯氧基(DTBPO)自由基配合物的质子转移动力学进行了理论研究。为了阐明转移机理,模拟了苯甲酸衍生物与二叔丁基苯甲酸络合物的反应途径。在真空和甲苯介质(PCM溶剂化模型)中,采用QST3, IRC程序,在UB3LYP/6-31G+(d, p)理论水平上的DFT方法进行计算。计算了硝基苯甲酸和氯苯甲酸的o-、p-和m-异构体配合物的几何参数和动力学参数。理论上估计的活化势垒为29-30 kJ/mol,比先前得到的实验数据高出约30%。我们注意到,在芳香酸的o型异构体的情况下,与初始状态相反,过渡态结构的共平面性被破坏了。这导致质子转移机制的改变。分析了所研究配合物中的电荷分布、偶极矩和静电势的动力学。计算结果表明,所研究的分子间质子交换过程发生在整个氢原子转移(HAT)过程,而不是整个质子耦合电子转移(PCET)过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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