Journal Article

·2004

Effect of molecular properties on the photocatalytic degradation rates of dichlorophenols and dichloroanilines in aqueous TiO2suspensions

Nevim San YTU , Arzu Hatipoğlu YTU , Zekiye Çınar YTU

Toxicological & Environmental Chemistry Reviews

Abstract

The kinetics of the photocatalytic degradation of 10 different dichlorophenols and dichloroanilines have been investigated experimentally and theoretically. With the intention of finding certain molecular indices in order to determine the degradation rates of aromatic pollutants, geometry optimizations of the compounds have been performed with the semiempirical PM3 method. The molecular orbital calculations have been carried out by an SCF method using the RHF formalism. The correlations between the apparent first-order rate constants and the calculated molecular properties of the compounds have been examined. Four different structure–activity relationships have been developed expressing the logarithms of the rate constants in terms of the Hammett constants, electron densities of the substituents, the coefficients and the energies of the highest occupied molecular orbitals HOMO, and 1-octanol/water partition coefficients log K OW.

Keywords

Reaction rate constant Molecular orbital Chemistry Partition coefficient Aqueous solution Computational chemistry Formalism (music) Logarithm Kinetics Octanol Physical chemistry Thermodynamics Molecule Organic chemistry Physics

Subject Areas

TiO2 Photocatalysis and Solar Cells ·Renewable Energy, Sustainability and the Environment ·Physical Sciences
Chemistry and Chemical Engineering ·Environmental Chemistry ·Physical Sciences
Advanced Photocatalysis Techniques ·Renewable Energy, Sustainability and the Environment ·Physical Sciences

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