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Quantitative structure-property relationships for direct photolysis of polybrominated diphenyl ethers.

机译:多溴联苯醚直接光解的定量结构-性质关系。

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摘要

Using semiempirical quantum chemical descriptors, by partial least squares (PLS) regression, quantitative structure-property relationships (QSPRs) were established for direct photolysis quantum yields (Phi) and rate constants (k) of polybrominated diphenyl ether congeners dissolved in water/methanol and methanol solutions, respectively, and irradiated by artificial ultraviolet A light. Q(cum)(2), a parameter indicating robustness and predictive abilities of PLS models, for the significant QSPR models is larger than 0.702. The gap of frontier molecular orbital energies (E(LUMO)-E(HOMO)) and the most positive Mulliken atomic charges on a hydrogen atom ( [Formula: see text] ) are two main molecular structural factors governing the logPhi values. logPhi increases with increasing E(LUMO)-E(HOMO) and [Formula: see text] values. logk is mainly related to bromination degree and pattern which can be characterized by molecular weight (Mw), average molecular polarizability (alpha), and average Mulliken atomic charges on bromine atoms (q(Br)). logk increases with bromination degree (Mw, alpha) and q(Br).
机译:使用半经验量子化学描述符,通过偏最小二乘(PLS)回归,建立了定量结构-性质关系(QSPRs),用于直接光解量子产率(Phi)和溶解在水/甲醇中的多溴二苯醚同类物的速率常数(k)分别用甲醇溶液和人工紫外线A照射。对于重要的QSPR模型,Q(cum)(2)(指示PLS模型的鲁棒性和预测能力)的参数大于0.702。前沿分子轨道能隙(E(LUMO)-E(HOMO))和氢原子上最正的Mulliken原子电荷(公式),是控制logPhi值的两个主要分子结构因素。 logPhi随着E(LUMO)-E(HOMO)和[公式:参见文本]值的增加而增加。 logk主要与溴化程度和模式有关,可以用分子量(Mw),平均分子极化率(α)和溴原子上的平均Mulliken原子电荷(q(Br))来表征。 logk随溴化度(Mw,alpha)和q(Br)的增加而增加。

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