College of Biology & Environment Engineering, Zhejiang Shuren University, Hangzhou 310015, China.
Ecotoxicol Environ Saf. 2012 Jun;80:1-5. doi: 10.1016/j.ecoenv.2012.02.002. Epub 2012 Feb 27.
Geometrical optimization and electrostatic potential calculations have been performed at the HF/6-31G level of theory for investigated persistent organic pollutants (POPs). A number of statistically based parameters have been obtained. Relationship between soot-water partition coefficients (logK(SC)) of POPs and the structural descriptors has been established by the multiple linear regression method. The result shows that the quantities derived from electrostatic potential V(s)(-)¯ and V(s,max), together with molecular surface area (A(S)) and the energy of the highest occupied molecular orbital (E(HOMO)) can be well used to express the quantitative relationship between structure and logK(SC) (QSPR) of POPs. Predictive capability of the model has been demonstrated by leave-one-out cross-validation with the cross-validated correlation coefficient of 0.9797. Furthermore, the predictive power of this model was further examined for the external test set with the correlation coefficient of 0.9811 between observed and predicted logK(SC), validating the robustness and good predictive ability of our model. Furthermore, in order to further investigate the applicability of these parameters derived from electrostatic potential in prediction of soot-water partition coefficient for organic pollutants, eleven polycyclic aromatic hydrocarbons (PAHs), eleven polychlorinated biphenyls (PCBs) and nine phenyl urea herbicides (PUHs) from other source have also been studied. The QSPR models established may provide a new powerful method for predicting soot-water partition coefficients (logK(SC)) of organic pollutants.
在 HF/6-31G 理论水平上进行了几何优化和静电势计算,以研究持久性有机污染物 (POPs)。获得了许多基于统计的参数。通过多元线性回归方法建立了 POPs 的烟尘-水分配系数 (logK(SC)) 与结构描述符之间的关系。结果表明,静电势 V(s)(-)¯ 和 V(s,max) 的数量,以及分子表面积 (A(S)) 和最高占据分子轨道能量 (E(HOMO)) 可以很好地用于表达 POPs 的结构与 logK(SC) 之间的定量关系 (QSPR)。通过留一法交叉验证,模型的预测能力得到了验证,交叉验证相关系数为 0.9797。此外,通过外部测试集进一步检验了该模型的预测能力,观察值和预测值之间的 logK(SC) 相关系数为 0.9811,验证了我们模型的稳健性和良好的预测能力。此外,为了进一步研究这些静电势衍生参数在预测有机污染物烟尘-水分配系数中的适用性,还研究了来自其他来源的 11 种多环芳烃 (PAHs)、11 种多氯联苯 (PCBs) 和 9 种苯脲类除草剂 (PUHs)。建立的 QSPR 模型可能为预测有机污染物的烟尘-水分配系数 (logK(SC)) 提供一种新的有力方法。