Interdisciplinary Center for Nanotoxicity, Department of Chemistry, Jackson State University, Jackson, Mississippi 39217, USA.
Environ Sci Technol. 2009 Dec 15;43(24):9208-15. doi: 10.1021/es902566b.
Water solubility values for 27 nitro compounds with experimentally measured values were computed using the conductor-like screening model for real solvent (COSMO-RS) based on the density functional theory and COSMO technique. We have found that the accuracy of the COSMO-RS approach for prediction of water solubility of liquid nitro compounds is impressively high (the errors are lower than 0.1 LU). However, for some solid nitro compounds, especially nitramines, there is sufficient disagreement between calculated and experimental values. In order to increase the accuracy of predictions the quantitative structure-property relationship (QSPR) part of the COSMO-RS approach has been modified. The solubility values calculated by the modified COSMO-RS method have shown much better agreement with the experimental values (the mean absolute errors are lower than 0.5 LU). Furthermore, this technique has been used for prediction of water solubility for an expanded set of 23 nitro compounds including nitroaromatic, nitramines, nitroanisoles, nitrogen rich compounds, and some their nitroso and amino derivatives with unknown experimental values. The solubility values predicted using the proposed computational technique could be useful for the determination of the environmental fate of military and industrial wastes and the development of remediation strategies for contaminated soils and waters. This predictive capability is especially important for unstable compounds and for compounds that have yet to be synthesized.
采用基于密度泛函理论和 COMSO 技术的可导屏蔽模型(COSMO-RS),计算了 27 种具有实验测量值的硝基化合物的水溶解度值。我们发现,COSMO-RS 方法预测液体硝基化合物水溶解度的准确性非常高(误差低于 0.1 LU)。然而,对于某些固体硝基化合物,特别是硝胺,计算值与实验值之间存在足够的差异。为了提高预测的准确性,对 COSMO-RS 方法的定量构效关系(QSPR)部分进行了修改。经修正的 COSMO-RS 方法计算的溶解度值与实验值吻合得更好(平均绝对误差低于 0.5 LU)。此外,该技术还用于预测一组扩展的 23 种硝基化合物的水溶解度,包括硝基芳烃、硝胺、硝基苯甲醚、富氮化合物以及一些未知实验值的亚硝胺和氨基衍生物。使用所提出的计算技术预测的溶解度值可用于确定军事和工业废物的环境归宿,以及制定受污染土壤和水域的修复策略。对于不稳定的化合物和尚未合成的化合物,这种预测能力尤为重要。