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Modeling RAFT Gelation and Grafting of Polymer Brushes for the Production of Molecularly Imprinted Functional Particles

机译:模拟筏凝胶凝胶化与聚合物刷的嫁接,生产分子印迹功能粒子

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RAFT precipitation polymerization was here used for the molecular imprinting of 5-fluorouracil (a drug used in cancer treatment) followed by grafting of polymer functional brushes in the particles surface. Materials combining high molecular recognition capabilities and stimulation triggered by changes in the surrounding environment (e.g. pH/temperature) have thus been sought. Mathe- matical modeling of the RAFT copolymerization of vinyl/divinyl monomers was used to describe the crosslinking process involved in the molecular imprinting step. The size of the grafted polymer functional brushes was estimated using models for the calculation of molecular weight distribution in RAFT homopolymerization. One of the goals of this study consists in the development of polymer reaction engineering tools for the design of synthesis conditions leading to tailored molecularly imprinted particles with responsive features. A first sketch of the two steps involved in the production of the MIP responsive particles is here presented. However, the need for new kinetic studies accounting for specificities of the molecular imprinting and surface extension processes (e.g. presence of template during molecular imprinting and solvent effects) is here identified. Measurements of the dynamics of gelation and brushes growth are also needed to perform model validation. Improvement on the modeling of RAFT gelation with heterogeneous conditions avoiding some simplifications and the amelioration of the numerical efficiency in the calculation of the MWD of RAFT polymers are other issues to be addressed in future works.
机译:这里使用筏沉淀聚合来用于5-氟尿嘧啶(癌症处理中使用的药物)的分子印迹,然后在颗粒表面中移植聚合物官能刷。因此,因此寻求组合高分子识别能力和刺激的刺激,因此得到了周围环境(例如pH /温度)的变化。使用乙烯基/二乙烯基单体的筏共聚的数学建模用于描述分子印迹步骤中涉及的交联过程。使用模型估计接枝的聚合物官能刷的尺寸,用于计算筏均聚物中的分子量分布。本研究的目标之一包括在开发用于设计合成条件的聚合物反应工程工具,导致具有响应性特征定制的分子印迹颗粒。这里介绍了涉及MIP响应颗粒的产生的两个步骤的第一个草图。然而,这里需要对新动力学研究的需求核对分子印迹和表面延伸方法的特异性(例如,在分子印迹期间的模板存在和溶剂效应)。还需要测量凝胶化和刷子生长的动态来进行模型验证。改进筏凝胶化与异构条件的建模避免了一些简化的一些简化和数值效率的改进在筏子聚合物的MWD计算中是未来作品中的其他问题。

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