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Kinetic modeling of the molecular architecture of cross-linked copolymers synthesized by controlled radical polymerization techniques

机译:受控自由基聚合技术合成的交联共聚物分子结构的动力学模型

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摘要

A recently developed general kinetic approach, based on population balances in terms of generating functions, is applied to the modeling of the molecular architecture of branched copolymers produced through controlled radical polymerization (CRP) techniques, namely nitroxide-mediated radical polymerization (NMRP) and atom-transfer radical polymerization (ATRP). Thanks to this method, it is possible to carry out dynamic predictions of distributions of molecular weights, sequence lengths and z-average mean square radius of gyration of the products, both before and after gelation (whenever it occurs) with consideration of complex kinetic schemes. The model chemical systems styrene + divinylbenzene (S/DVB) and methyl methacrylate + ethylene glycol dimethacrylate (MMA/EGDMA) are experimentally investigated in order to assess the prediction capabilities of the aforementioned approach. Measurements of absolute molecular weights and z-average radius of gyration of the copolymers are performed for different times of polymerization using a SEC system with a refractive index detector coupled with MALLS. It is shown that the proposed computational tool can enhance the possibility of better design of these complex materials but additional studies concerning the impact of intramolecular cyclizations on the structure of materials synthesized at diluted conditions are needed.
机译:最近开发的一种通用动力学方法,基于生成函数方面的总体平衡,被应用于建模通过受控自由基聚合(CRP)技术生产的支化共聚物的分子结构,即氮氧化物介导的自由基聚合(NMRP)和原子-转移自由基聚合(ATRP)。借助这种方法,可以在凝胶化之前和之后(无论何时发生)进行动力学预测,以预测产物分子量,序列长度和z平均回转平均z半径的分布,同时考虑复杂的动力学方案。为了评估上述方法的预测能力,对模型化学体系苯乙烯+二乙烯基苯(S / DVB)和甲基丙烯酸甲酯+乙二醇二甲基丙烯酸酯(MMA / EGDMA)进行了实验研究。共聚物的绝对分子量和Z-平均回转半径是在不同的聚合时间下使用带有折射率检测器和MALLS的SEC系统进行测量的。结果表明,所提出的计算工具可以提高对这些复杂材料进行更好设计的可能性,但是还需要进行其他有关分子内环化对在稀释条件下合成的材料结构的影响的研究。

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