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Synthesis of a sun-shaped amphiphilic copolymer consisting of a cyclic perfluorocyclobutyl aryl ether-based backbone and lateral PMAA side chains

机译:合成由环状全氟环丁基芳基醚基骨架和侧向PMAA侧链组成的太阳型两亲共聚物

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摘要

A novel amphiphilic sun-shaped copolymer, c-PMBTFVB-g-PMAA (MBTFVB: 2-methyl-1,4-bistrifluorovinyloxybenzene, MAA: methacrylic acid) containing a cyclic perfluorocyclobutyl (PFCB) aryl ether-based backbone and PMAA lateral side chains with narrow molecular weight distribution (M-w/M-n <= 1.38), was synthesized via the site transformation strategy. First, a PMBTFVB linear precursor was prepared by thermal step-growth cycloaddition polymerization of MBTFVB trifluorovinyl monomer. After the end functionalization of the linear precursor with alkyne, Glaser coupling reaction was performed to produce c-PMBTFVB cyclic homopolymer. The pendant methyls on PFCB aryl ether-based backbone were then converted to Br-containing ATRP initiating groups by a mono-bromination reaction with N-bromosuccinimide (NBS) and benzoyl peroxide (BPO) to give c-PMBTFVB-Br cyclic macroinitiator without affecting the main chain, where the density of ATRP initiation groups could be tuned from 33% to 58% by varying the feeding ratio of NBS to the pendant methyl. Subsequently, c-PMBTFVB-g-PMAA sun-shaped amphiphilic copolymers with hydrophilic PMAA side chains were synthesized by ATRP of tert-butyl methacrylate (tBMA) initiated by c-PMBTFVB-Br, followed by the selective hydrolysis of hydrophobic PtBMA segment into hydrophilic PMAA segment using CF3COOH. The obtained c-PMBTFVB cyclic homopolymer and its precursor were well characterized by GPC, NMR, and DSC and all the observations indicated a high efficiency of the intra-macromolecular cyclization via Glaser coupling reaction. The critical micelle concentrations of the obtained amphiphilic copolymers were determined by fluorescence probe technique and the morphologies of the formed micelles were investigated by TEM.
机译:一种新型的两亲性太阳型共聚物,c-PMBTFVB-g-PMAA(MBTFVB:2-甲基-1,4-双三氟乙烯基氧基苯,MAA:甲基丙烯酸),含有环状全氟环丁基(PFCB)芳基醚骨架和PMAA侧链通过位点转化策略合成了具有窄分子量分布(Mw / Mn <= 1.38)的聚合物。首先,通过MBTFVB三氟乙烯基单体的热逐步生长环加成聚合反应制备PMBTFVB线性前体。在线性前体用炔烃的末端官能化之后,进行Glaser偶联反应以产生c-PMBTFVB环状均聚物。然后,通过与N-溴琥珀酰亚胺(NBS)和过氧化苯甲酰(BPO)的单溴化反应,将PFCB芳基醚基骨架上的侧基甲基转化为含Br的ATRP引发基团,得到c-PMBTFVB-Br环状大分子引发剂通过改变NBS与侧链甲基的进料比例,可以将ATRP起始基团的密度从33%调整为58%。随后,由c-PMBTFVB-Br引发的甲基丙烯酸叔丁酯(tBMA)的ATRP合成了具有亲水性PMAA侧链的c-PMBTFVB-g-PMAA太阳型两亲共聚物,然后将疏水性PtBMA链段选择性水解为亲水性PMAA段使用CF3COOH。所得的c-PMBTFVB环状均聚物及其前体通过GPC,NMR和DSC进行了很好的表征,所有观察结果表明通过Glaser偶联反应实现了大分子内环化。通过荧光探针技术确定所获得的两亲共聚物的临界胶束浓度,并通过TEM研究所形成的胶束的形态。

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