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Immortal Ring-Opening Polymerization of rac-Lactide Using Polymeric Alcohol as Initiator to Prepare Graft Copolymer

机译:以聚合醇为引发剂的rac-丙交酯不饱和开环聚合反应

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摘要

In the presence of a small molecular protic initiator, immortal ring-opening polymerization (ROP) of lactide (LA) is a highly efficient strategy to synthesize polylactide in a controllable manner, while using polymeric alcohol as an initiator has been less investigated. A series of polymeric alcohols (PS–OH) composed of styrene and 4.3%–18% hydroxyl functional styrene (diethyl(hydroxy(4-vinylphenyl)methyl)phosphonate, St–OH) were synthesized through reversible addition-fragmentation transfer (RAFT) polymerization. Using PS–OH as an initiator, the immortal ROP of rac-LA was catalyzed by dibutylmagnesium (MgnBu2) under various ratios of monomer to hydroxyl group within PS–OH to generate polystyrene-g-polylactide (PS–g–PLA) copolymers with different graft lengths. After thermal annealing at 115 °C, the PLA domain aggregated to nanospheres among the PS continuum. The size of the nanospheres, varying from 130.1 to 224.2 nm, was related to the graft density and length of PS–g–PLA. Nanoporous films were afforded through chemical etching of the PLA component.
机译:在小分子质子引发剂的存在下,丙交酯(LA)的永生开环聚合(ROP)是一种可控方式合成聚丙交酯的高效策略,而使用聚合醇作为引发剂的研究较少。通过可逆的加成-断裂转移(RAFT)合成了一系列由苯乙烯和4.3%–18%羟基官能苯乙烯(二乙基(羟基(4-乙烯基苯基)甲基)膦酸酯,St-OH)组成的聚合醇(PS-OH)。聚合。以PS-OH为引发剂,在PS-OH内各种单体与羟基的比例下,二丁基镁(Mg n Bu2)催化rac-LA的永生ROP,生成聚苯乙烯-g-聚丙交酯(PS-g-PLA)具有不同接枝长度的共聚物。在115°C下进行热退火后,PLA域聚集到PS连续体之间的纳米球中。纳米球的大小在130.1至224.2 nm之间变化,与PS-g-PLA的接枝密度和长度有关。通过对PLA组分进行化学刻蚀可以得到纳米多孔膜。

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