首页> 外文期刊>Toxicological and Environmental Chemistry >EFFECT OF MOLECULAR PROPERTIES ON THE PHOTOCATALYTIC DEGRADATION RATES OF DICHLOROPHENOLS AND DICHLOROANILINES IN AQUEOUS TiO_2 SUSPENSIONS
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EFFECT OF MOLECULAR PROPERTIES ON THE PHOTOCATALYTIC DEGRADATION RATES OF DICHLOROPHENOLS AND DICHLOROANILINES IN AQUEOUS TiO_2 SUSPENSIONS

机译:分子性质对TiO_2悬浮液中二氯酚和二氯苯胺光催化降解速率的影响

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摘要

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).
机译:实验和理论上研究了10种不同的二氯苯酚和二氯苯胺的光催化降解动力学。为了找到某些分子指数以确定芳香族污染物的降解速率,已使用半经验PM3方法对化合物进行了几何优化。分子轨道计算已通过使用RHF形式论的SCF方法进行。已经检查了表观一级速率常数与化合物的计算分子性质之间的相关性。已经开发出四种不同的结构活性关系,以哈米特常数,取代基的电子密度,最高占据分子轨道HOMO的系数和能量以及1-辛醇/水分配系数的形式表示速率常数的对数记录K_(OW)。

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