首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Study of the solution and aqueous emulsion copolymerization of vinylidene chloride with methyl acrylate in the presence a poly(ethylene oxide) macromolecular RAFT agent
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Study of the solution and aqueous emulsion copolymerization of vinylidene chloride with methyl acrylate in the presence a poly(ethylene oxide) macromolecular RAFT agent

机译:聚环氧乙烷高分子RAFT剂存在下偏二氯乙烯与丙烯酸甲酯的溶液和水乳液共聚研究

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摘要

The reversible addition-fragmentation chain transfer (RAFT) copolymerization of vinylidene chloride (VDC) with methyl acrylate (MeA) was studied in the presence of poly(ethylene oxide)-based macromolecular RAFT (macroRAFT) agents of the trithiocarbonate type (PEO-TTC) in solution and in aqueous emulsion. Firstly the formation of PEO-b-P(VDC-co-MeA) diblock copolymers was performed in toluene solution at 30 C and a good control over the polymerization with high chain-end functionality was shown. A first aqueous emulsion copolymerization of VDC with MeA was performed using one of the amphiphilic PEO-b-P(VDC-co-MeA) diblock copolymers as macromolecular stabilizer. Then, in a series of experiments the PEO-TTC macroRAFT agents were directly tested as both chain transfer agents and stabilizing agents in similar conditions (aqueous batch emulsion copolymerization of VDC with MeA at 70 C). The influence of the nature and concentration of the initiating system and the presence or not of a buffer were studied. We demonstrated that in simple conditions, nanometric latex particles composed of amphiphilic PEO-b-P(VDC-co-MeA) diblock copolymers formed by polymerization-induced self-assembly (PISA). It can thus be concluded that PEO-TTC macroRAFT agents are valuable non-ionic macromolecular stabilizers in the emulsion copolymerization of VDC and MeA and allow the formation of core-shell diblock copolymer particles in the absence of free surfactant. However, when rather high molar masses of the hydrophobic PVDC-based block were targeted, the determined molar masses deviated from the theoretical values.
机译:在存在三硫代碳酸酯型(PEO-TTC)的聚环氧乙烷基大分子RAFT(macroRAFT)试剂存在下,研究了偏二氯乙烯(VDC)与丙烯酸甲酯(MeA)的可逆加成-断裂链转移(RAFT)共聚合。 )的溶液和水乳液。首先,PEO-b-P(VDC-co-MeA)二嵌段共聚物的形成是在30℃的甲苯溶液中进行的,显示了对具有高链端官能度的聚合反应的良好控制。使用两亲性PEO-b-P(VDC-co-MeA)二嵌段共聚物中的一种作为大分子稳定剂,进行VDC与MeA的第一水乳液共聚。然后,在一系列实验中,直接将PEO-TTC macroRAFT试剂作为链转移剂和稳定剂在相似条件下(VDC与MeA在70 C下进行水批乳液共聚)直接测试。研究了引发系统的性质和浓度以及缓冲液是否存在的影响。我们证明了在简单条件下,由两亲性PEO-b-P(VDC-co-MeA)两嵌段共聚物组成的纳米胶乳颗粒是通过聚合诱导自组装(PISA)形成的。因此可以得出结论,PEO-TTC macroRAFT剂在VDC和MeA的乳液共聚中是有价值的非离子大分子稳定剂,可在不存在游离表面活性剂的情况下形成核-壳二嵌段共聚物颗粒。但是,当以疏水性基于PVDC的嵌段的较高摩尔质量为目标时,确定的摩尔质量会偏离理论值。

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