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Use of quantum-chemical descriptors to analyse reaction rate constants between organic chemicals and superoxide/hydroperoxyl (O-2(center dot-)/HO2 center dot)

机译:使用量子化学描述符分析有机化学物质和超氧化物/氢过氧基(O-2(中心DOT - )/ HO2中心点之间的反应速率常数

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摘要

The reaction between superoxide (O-2(center dot-)) and organic chemicals is of interest in many scientific disciplines including biology and synthetic chemistry, as well as for the evaluation of chemical fate in the environment. Due to limited data and lack of congeneric modelling, the involvement of superoxide in many complex processes cannot be adequately evaluated. In this study, we developed new quantitative structure-property relationship (QSPR) models for the prediction of the aqueous-phase rate constant for the reaction between superoxide and a wide variety of organic chemicals reacting via one-electron oxidation, reduction and hydrogen-transfer. It is shown that the relative importance of these pathways is related to frontier molecular orbital (FMO) interaction and to pH. The class-specific QSPRs developed have good statistics (0.84 = R-2 = 0.92). For non-congeneric chemicals it is demonstrated that the reactivity toward superoxide can be described by applying explicit descriptions for competition kinetics and speciation. Therefore, the relationships developed in this study are useful as a starting point to evaluate more complex molecules having, for example, multiple reactive functional groups, labile H bonds, or delocalised cationic charges. However, additional kinetic data and more rigorous computation are needed to evaluate such molecules.
机译:超氧化物(O-2(中心DOT-))和有机化学物质之间的反应对许多科学学科感兴趣,包括生物学和合成化学,以及评估环境中的化学命运。由于数据有限和缺乏先天性建模,超氧化物在许多复杂过程中的参与不能得到充分评估。在这项研究中,我们开发了新的定量结构 - 性质关系(QSPR)模型,用于预测过量氧化,通过单电子氧化,还原和氢转移反应的各种有机化学品的水相率常数。结果表明,这些途径的相对重要性与前沿分子轨道(FMO)相互作用和pH有关。特定于特定的QSPRS具有良好的统计(0.84& r-2 = 0.92)。对于非共生化学品,证明了对超氧化物的反应可以通过申请竞争动力学和形态的明确描述来描述。因此,本研究中开发的关系可用作评估具有例如多重反应性官能团,不稳定的H键或移植阳离子阳离子电荷的更复杂分子的起点。然而,需要额外的动力学数据和更严格的计算来评估这些分子。

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