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硝硫磷杀虫剂的亲核降解及亲核试剂的性能:计算研究。

Nucleophilic degradation of fenitrothion insecticide and performance of nucleophiles: a computational study.

机构信息

Department of Spectroscopy, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700 032, India.

出版信息

J Phys Chem A. 2012 Mar 15;116(10):2536-46. doi: 10.1021/jp2100057. Epub 2012 Mar 5.

Abstract

Ab initio and density functional theory (DFT) calculations have been performed to understand the destruction chemistry of an important organophosphorus insecticide O,O-dimethyl O-(3-methyl-4-nitrophenyl) phosphorothioate, fenitrothion (FN), toward nucleophilic attack. Breaking of the P-OAr linkages through nucleophilic attack is considered to be the major degradation pathway for FN. One simple nucleophile, hydroxide (OH(-)), and two different α-nucleophiles, hydroperoxide (OOH(-)) and hydroxylamine anion (NH(2)O(-)), have been considered for this study. Nucleophilic attack at the two different centers, S(N)2@P and S(N)2@C, has been monitored, and the computed reaction energetics confirms that the S(N)2@P reactions are favorable over the S(N)2@C reactions for all the nucleophiles. All electronic structure calculations for the reaction are performed at DFT-B3LYP/6-31+G(d) level of theory followed by a refinement of energy at ab initio MP2/6-311++G(2d,2p) level. The effect of aqueous polarization on both the S(N)2 reactions is taken into account employing the conductor-like screening model (COSMO) as well as polarization continuum model (PCM) at B3LYP/6-31+G(d) level of theory. Relative performance of the two α-nucleophiles, OOH(-) and NH(2)O(-), at the P center has further been clarified using natural bond orbital (NBO), conceptual DFT, and atoms in molecules (AIM) approaches. The strength of the intermolecular hydrogen bonding in the transition states and topological properties of the electron density distribution for -X-H···S (X = O, N) intermolecular hydrogen bonds are the subject of NBO and AIM analysis, respectively. Our calculated reaction energetics and electronic properties suggest that the relative order of nucleophilicity for the nucleophiles is OOH(-) > NH(2)O(-) > OH(-) for the S(N)2@P, whereas for the S(N)2@C the order, which gets little altered, is NH(2)O(-) > OOH(-) > OH(-).

摘要

我们采用从头算和密度泛函理论(DFT)方法研究了重要有机磷杀虫剂 O,O-二甲基 O-(3-甲基-4-硝基苯基)硫代磷酸酯(fenitrothion,FN)在亲核进攻下的破坏化学。通过亲核进攻破坏 P-OAr 键被认为是 FN 的主要降解途径。我们考虑了一种简单亲核试剂(OH(-))和两种不同的α-亲核试剂(OOH(-))和羟胺阴离子(NH(2)O(-))来进行这项研究。我们监测了在两个不同中心(S(N)2@P 和 S(N)2@C)的亲核进攻,并通过计算反应的热力学证实,对于所有亲核试剂,S(N)2@P 反应都比 S(N)2@C 反应更有利。所有反应的电子结构计算均在 DFT-B3LYP/6-31+G(d)理论水平上进行,然后在从头算 MP2/6-311++G(2d,2p)理论水平上对能量进行细化。在 B3LYP/6-31+G(d)理论水平上,采用导体相似屏蔽模型(COSMO)和极化连续模型(PCM)考虑了水极化对两个 S(N)2 反应的影响。使用自然键轨道(NBO)、概念性 DFT 和分子中的原子(AIM)方法进一步澄清了两个α-亲核试剂(OOH(-))和 NH(2)O(-)在 P 中心的相对性能。在过渡态中氢键的强度和 X-H···S(X = O,N)分子间氢键的电子密度分布的拓扑性质分别是 NBO 和 AIM 分析的主题。我们的计算反应热力学和电子性质表明,亲核试剂的亲核性相对顺序为 S(N)2@P 时 OOH(-) > NH(2)O(-) > OH(-),而 S(N)2@C 时的顺序变化不大,为 NH(2)O(-) > OOH(-) > OH(-)。

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