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羟基自由基介导的偶氮吡啶染料降解的取代基效应:反应机制的理论方法。

Effect of substituents in hydroxyl radical-mediated degradation of azo pyridone dyes: Theoretical approaches on the reaction mechanism.

机构信息

Institute of Chemistry, Technology and Metallurgy, University of Belgrade (National Institute), Department of Catalysis and Chemical Engineering, Njegoševa 12, Belgrade, Republic of Serbia.

Department of Catalysis and Chemical Reaction Engineering, National Institute of Chemistry, Hajdrihova 19, Ljubljana, Slovenia.

出版信息

J Environ Sci (China). 2020 Dec;98:14-21. doi: 10.1016/j.jes.2020.05.022. Epub 2020 Jun 11.

Abstract

Understanding the degradation behavior of azo dyes in photocatalytic wastewater treatment is of fundamental and practical importance for their application in textile-processing and other coloration industries. In this study, quantum chemistry, as density functional theory, was used to elucidate different degradation pathways of azo pyridone dyes in a hydroxyl radical (HO)-initiated photocatalytic system. A series of substituted azo pyridone dyes were synthesized by changing the substituent group in the para position of the benzene moiety, ranging from strong electron-donating to strong electron-withdrawing groups. The effect of dye molecular structure on the photocatalytic degradation reaction mechanism was analyzed and quantification of substituent effects on the thermodynamic and kinetics parameters was performed. Potential energy surface analysis revealed the most susceptible reaction site for the HO attack. The calculated reaction barriers are found to be strongly affected by the nature of substituent group with a good correlation using Hammett σ constants and experimentally determined reaction rates. The stability of pre-reaction complexes and transition state complexes were analyzed applying the distortion-interaction model. The increased stability of the transition state complexes with the distancing from the substituent group has been established.

摘要

理解偶氮染料在光催化废水处理中的降解行为对于它们在纺织加工和其他染色工业中的应用具有基础和实际重要性。在这项研究中,量子化学(如密度泛函理论)被用于阐明羟基自由基(HO)引发的光催化体系中偶氮吡啶染料的不同降解途径。通过改变苯环部分对位的取代基,合成了一系列取代偶氮吡啶染料,取代基范围从强供电子基团到强吸电子基团。分析了染料分子结构对光催化降解反应机制的影响,并对热力学和动力学参数的取代基效应进行了量化。势能面分析揭示了 HO 攻击的最易反应位点。计算出的反应势垒受取代基性质的强烈影响,使用哈米特 σ 常数和实验测定的反应速率得到很好的相关性。应用扭曲-相互作用模型分析了预反应配合物和过渡态配合物的稳定性。已经确定过渡态配合物的稳定性随取代基距离的增加而增加。

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