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A Modified 3D-QSAR Model Based on Ideal Point Method and Its Application in the Molecular Modification of Plasticizers with Flame Retardancy and Eco-Friendliness

机译:一种基于理想点法的改进的3D QSAR模型及其在具有阻燃和生态友好性的增塑剂分子改造中的应用

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摘要

The addition of plasticizers makes plastics flammable, and thus, poses a potential risk to the environment. In previous researches, plasticizers with flame retardancy had been synthesized, but their eco-friendliness had not been tested or described. Thus, in this paper, eco-friendliness plasticizers with flame retardancy were designed based on phthalic acid esters (PAEs), which are known as common plasticizers and major plastic additives. For a comprehensive analysis, such as flammability, biotoxicity, and enrichment effects, 17 PAEs’ comprehensive evaluation values were calculated based on the ideal point method. Further, a multi-effect three-dimensional quantitative structure-activity relationship (3D-QSAR) model of PAEs’ flammability, biotoxicity and enrichment effects was constructed. Thus, 18 dimethyl phthalate (DMP) derivatives and 20 diallyl phthalate (DAP) derivatives were designed based on three-dimensional contour maps. Through evaluation of eco-friendliness and flammability, six eco-friendly PAE derivatives with flame retardancy were screened out. Based on contour maps analysis, it was confirmed that the introduction of large groups and hydrophobic groups was beneficial to the simultaneous improvement of PAEs’ comprehensive effects, and multiple effects. In addition, the group properties were correlated significantly with improved degrees of the comprehensive effects of corresponding PAE derivatives, confirming the feasibility of the comprehensive evaluation method and modified scheme.
机译:增塑剂的添加使塑料易燃,因此对环境构成了潜在风险。在以前的研究中,已经合成了具有阻燃性的增塑剂,但它们的生态友好性尚未进行测试或描述。因此,在本文中,基于邻苯二甲酸酯(PAES)设计了具有阻燃性的生态友好增塑剂,其称为常见增塑剂和主要塑料添加剂。对于综合分析,例如易燃性,生物毒性和富集效应,基于理想点法计算了17Paes的综合评估值。此外,构建了PAES易燃性,生物毒性和富集效果的多效三维定量结构 - 活性关系(3D-QSAR)模型。因此,基于三维等高图设计了18个邻苯二甲酸酯(DMP)衍生物和20-二烯丙基邻苯二甲酸酯(DAP)衍生物。通过评估生态友好性和易燃性,筛选出具有阻燃性的六种环保PAE衍生物。基于轮廓图分析,证实大群和疏水基团的引入有利于同时改善PAES综合效果和多种效果。此外,群体性质显着,随着相应的PAE衍生物的综合效果的改善程度,证实了综合评价方法和修改方案的可行性。

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