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首页> 外文期刊>Macromolecules >Seeded Emulsion Polymerization of Block Copolymer Core-Shell Nanoparticles with Controlled Particle Size and Molecular Weight Distribution Using Xanthate-Based RAFT Polymerization
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Seeded Emulsion Polymerization of Block Copolymer Core-Shell Nanoparticles with Controlled Particle Size and Molecular Weight Distribution Using Xanthate-Based RAFT Polymerization

机译:基于黄药酸酯的RAFT聚合控制粒径和分子量分布的嵌段共聚物核壳纳米粒子的种子乳液聚合

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摘要

The work described here has shown for the first time that well-defined core-shell nanostructures with controlled particle size and molecular weight distributions (in which the molecular weight distributions of both blocks are independently controlled using the same RAFT controlling agent) can be prepared in an aqueous environment.These types of nanoparticles can lead the way to more novel and interesting structures in applications for drug delivery,biosensors,and other devices.A poly-(methyl methacrylate) (PMMA) seed was used to control the particle size distribution,in which styrene (STY) in the presence of the RAFT agent was polymerized under batch conditions to give polymer particles with an number-average molecular weight (Mn) of 7000 and polydispersity (PDI) of 2.Butyl acrylate (BA) was then polymerized under semibatch conditions into these particles to give an overall M_n of 20 000 and PDI close to 1.3 for the block copolymer,in which greater than 90% block purity was observed.The calculated PDI of the second block (PBA) was close to 1.4,which is lower tha/L the theoretically determined value under batch conditions (PDI=1.6).The results show that by slow monomer addition feed into the reactor the PDI can be reduced and that by using the advantage of "random coupling" between the two blocks the PDI of the final block copolymer is lower than either of the individual blocks.
机译:此处描述的工作首次表明,可以制备具有控制的粒径和分子量分布(其中两个嵌段的分子量分布可以使用相同的RAFT控制剂独立控制)的定义明确的核-壳纳米结构。这些类型的纳米粒子可以为药物输送,生物传感器和其他设备的应用带来更新颖有趣的结构。聚甲基丙烯酸甲酯(PMMA)种子用于控制粒度分布,其中在分批条件下将苯乙烯(STY)在RAFT剂的存在下进行聚合,以得到数均分子量(Mn)为7000和多分散度(PDI)为2.的丙烯酸丁酯(BA)的聚合物颗粒在半分批条件下,将这些颗粒的总M_n设为20000,嵌段共聚物的PDI接近1.3,观察到嵌段纯度超过90%。计算得出的第二个嵌段(PBA)的PDI接近1.4,低于理论上在间歇条件下的确定值(PDI = 1.6)。结果表明,通过缓慢地将单体加入反应器中,PDI可以达到通过使用两个嵌段之间的“无规偶合”的优势,最终嵌段共聚物的PDI低于单个嵌段中的任何一个。

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