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Quantum-Mechanical QSPR Models for Polymerization Volume Change of Epoxides and Methacrylates Based on Mercury Dilatometry Results

机译:基于水银膨胀法的环氧树脂和甲基丙烯酸酯聚合量变化的量子力学QSPR模型

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摘要

Polymerization volume change (PVC) was measured systematically using mercury dilatometry for 41 epoxide and methacrylate monomers with quartz filler. Quantitative structure property relationship (QSPR) models were developed based on this previously unreported data to gain insight in the data collection method for future models. Successful models included only data from those samples which polymerized to hardness. The most significant descriptors in these models related to monomer reactivity. In contrast, PVC data collected under experimental conditions which maximized monomer conversion resulted in descriptors describing size and branching, indicating conversion must be considered for future PVC measurements. A Rule of Mixtures (ROM) correction term improved correlations of the dilatometer data with varying quartz content, and an adjustment for conversion may similarly enable inclusion of data which had not polymerize to hardness.
机译:使用水银膨胀法系统测量了41种环氧和甲基丙烯酸酯单体与石英填料的聚合体积变化(PVC)。基于此以前未报告的数据开发了定量结构特性关系(QSPR)模型,以了解未来模型的数据收集方法。成功的模型仅包括那些聚合成硬度的样品的数据。这些模型中最重要的描述符与单体反应性有关。相反,在最大单体转化率的实验条件下收集的PVC数据产生描述尺寸和分支的描述符,表明将来的PVC测量必须考虑转化率。混合规则(ROM)校正项改善了膨胀计数据与变化的石英含量之间的相关性,并且通过转换调整可以类似地包含未聚合到硬度的数据。

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