Journal Article

·2007

Reactivity Indices for ortho/para Monosubstituted Phenols

Nevim San YTU , Murat Kılıç YTU , Zekiye Çınar YTU

Journal of Advanced Oxidation Technologies

Abstract

Abstract The kinetics of the photocatalytic degradation reactions of twelve ortho/para mono-substituted phenols containing electron-donating or -withdrawing groups have been investigated experimentally. With the intention of determining the most suitable DFT reactivity descriptors, geometry optimizations of the compounds have been performed with the Density Functional Theory DFT at B3LYP/6-31G* level. In order to take the effect of solvent water into account, the calculations have been repeated for the optimized structures by using COSMO as the solvation model. Chemical hardness, softness, electronegativities, Fukui functions, local hardness and softness, local electrophilicities and softness differences for all phenol molecules have been calculated. Correlations between the apparent initial first-order rate constants determined in the experiments and the calculated DFT reactivity descriptors have been examined. Results show that the reactions investigated are electrophilic in nature. The local softness and softness differences correlate well with the reaction rates indicating that soft-soft interactions dominate in the photocatalytic degradation reactions of phenols.

Keywords

Reactivity (psychology) Electronegativity Chemistry Density functional theory Reaction rate constant Computational chemistry Phenol Fukui function Electrophile Phenols Solvation Kinetics Solvent Molecule Electrophilic substitution Physical chemistry Organic chemistry Catalysis

Subject Areas

Chemistry and Chemical Engineering ·Environmental Chemistry ·Physical Sciences
Free Radicals and Antioxidants ·Organic Chemistry ·Physical Sciences
Photochemistry and Electron Transfer Studies ·Physical and Theoretical Chemistry ·Physical Sciences

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