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羟基自由基引发的敌草隆氧化反应机理及动力学:氢原子和氯原子夺取反应

Mechanism and Kinetics of Diuron Oxidation Initiated by Hydroxyl Radical: Hydrogen and Chlorine Atom Abstraction Reactions.

作者信息

Manonmani G, Sandhiya L, Senthilkumar K

机构信息

Department of Physics , Bharathiar University , Coimbatore 641 046 , Tamil Nadu , India.

Department of Chemistry and Biochemistry , Texas Tech University , Lubbock , Texas 79409 , United States.

出版信息

J Phys Chem A. 2019 Oct 17;123(41):8954-8967. doi: 10.1021/acs.jpca.9b04800. Epub 2019 Oct 8.

Abstract

Diuron is a herbicide that has been classified as an environmental pollutant because of its harmful effects on living beings and environment. In the present work, the OH-initiated oxidation reaction of diuron is investigated by performing electronic structure calculations based on density functional theory (DFT) methods, M06-2X, ωB97X-D, and MPWB1K using the 6-31G(d,p) basis set. The CBS-QB3 method is used to validate the results obtained from the DFT methods. All possible initial hydrogen and chlorine atom abstraction reaction pathways involved in the oxidation of diuron were studied, and the favorable reaction pathways were found by analyzing the potential energy surface and thermochemistry of the reactions. The results obtained from the present work show that hydrogen atom abstraction from methyl and amine groups of diuron are energetically favorable, which leads to the formation of diuron radical intermediate and water molecule. The rate constant is calculated for most favorable reaction pathways by using canonical variation transition state theory (CVT) with small curvature tunnelling (SCT) correction over the temperature range 298-1000 K. The atmospheric lifetime of diuron is found to be around 15 days. The subsequent reaction of most favorable diuron radical intermediate with other atmospheric reactive species, such as O, HO, HO, and NO ( = 1, 2) radicals are studied. The time-dependent DFT calculation is performed to study the photolysis of diuron and favorable diuron radical intermediates. This study provides thermochemical and kinetic data for the oxidation of diuron initiated by OH radical through H atom abstraction reaction.

摘要

敌草隆是一种除草剂,因其对生物和环境的有害影响而被归类为环境污染物。在本研究中,通过基于密度泛函理论(DFT)方法(M06-2X、ωB97X-D和MPWB1K)并使用6-31G(d,p)基组进行电子结构计算,研究了敌草隆的OH引发的氧化反应。采用CBS-QB3方法验证从DFT方法获得的结果。研究了敌草隆氧化过程中所有可能的初始氢和氯原子夺取反应途径,并通过分析反应的势能面和热化学来确定有利的反应途径。本研究获得的结果表明,从敌草隆的甲基和胺基夺取氢原子在能量上是有利的,这会导致形成敌草隆自由基中间体和水分子。通过使用正则变分过渡态理论(CVT)并结合小曲率隧道效应(SCT)校正,在298-1000K的温度范围内计算了最有利反应途径的速率常数。发现敌草隆的大气寿命约为15天。研究了最有利的敌草隆自由基中间体与其他大气活性物种(如O、HO、HO和NO( = 1, 2)自由基)的后续反应。进行了含时DFT计算以研究敌草隆和有利的敌草隆自由基中间体的光解。本研究提供了通过氢原子夺取反应由OH自由基引发的敌草隆氧化的热化学和动力学数据。

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