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Elaboration of Corona Functionalized Regular Unimolecular Hyperbranched Polystyrene Nanoparticles

机译:阐述电晕官能化常规单分子超支化聚苯乙烯纳米粒子

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Functional arborescent graft polystyrenes prepared by the "graft-ongraft" technique, involving the iterative grafting of end functional polymer chains onto reactive polymer backbones were synthesized. The zero-generation comb polymers and then the first generation hyperbranched structures were obtained by the coupling reaction of living α-acetal polystyryllithium onto linear or comb chains of poly(chloroethyl vinyl ether) (PCEVE) of controlled DP_n and structure. Both the PS grafts and the PCEVE reactive backbones were synthesized individually by living polymerization techniques. Initiation of stytene polymerization from acetal functionalized lithium derivatives yield the ω-functionalization of all external polystyrene branches. Derivatization of these acetal branch termini allowed the generation of aldehyde, hydroxyl and carboxyl groups as well as the introduction of functional organic molecules at the periphery of the nanoparticles.
机译:合成了通过“移植物 - 载体”技术制备的功能树脂植物植物聚甾酮,涉及结束官能聚合物链迭代嫁接到反应性聚合物骨架上。通过活性α-缩醛聚苯吡啶鎓与受控DP_N和结构的聚(氯乙基乙烯基醚)(PCEVE)的线性或梳状链的偶联反应来获得零发电梳状结构。通过活性聚合技术单独合成PS移植物和PCEVE反应性骨架。来自缩醛官能化锂衍生物的苯乙烯聚合的启动产生所有外部聚苯乙烯分支的ω-官能化。这些缩醛分支末端的衍生化允许产生醛,羟基和羧基以及在纳米颗粒的周边引入功能有机分子。

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