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Benzyl Chloride-Functionalized Polycarbonates: A Versatile Platform for the Synthesis of Functional Biodegradable Polycarbonates

机译:苄基氯官能化的聚碳酸酯:一种多功能的功能性可生物降解聚碳酸酯的合成平台

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摘要

An aliphatic polycarbonate containing pendant benzyl chloride groups was synthesized by organocatalytic ring-opening polymerization (ROP) of a cyclic carbonate monomer (MTCOCH2BnCl). Facile postpolymerization modification of the resultant polymer with various nucleophiles facilitated access to a functionally diverse variety of polycarbonate materials in high yield, including those that contained diethanolamine, phosphonium, and azide groups. The azide-functionalized polycarbonates could be further elaborated via Cu-catalyzed click chemistry with alkynyl-functionalized poly(ethylene glycol) (PEG) or pyrene to form the corresponding PEG- or pyrene-grafted polymers. Finally, an amphiphilic block copolymer containing grafted pyrene units in the hydrophobic block was synthesized using the aforementioned postpolymerization click functionalization strategy. We show by transmission electron microscopy (TEM) and light scattering that the block copolymer self-assembles into micelles of similar to 48 nm diameter in aqueous media and that the critical micelle concentration (CMC) of the nanoparticles was lower than that exhibited by similarly sized micelles formed from a control block copolymer containing no pyrene (CMC values of 6.3 and 8.1 mg L-1, respectively).
机译:通过环碳酸酯单体(MTCOCH2BnCl)的有机催化开环聚合(ROP)合成了含苄基氯侧基的脂族聚碳酸酯。用各种亲核试剂对所得聚合物进行轻松的后聚合修饰,有助于以高收率获得功能多样的聚碳酸酯材料,包括含有二乙醇胺,phospho和叠氮基的聚碳酸酯材料。叠氮化物官能化的聚碳酸酯可以通过Cu催化的点击化学与炔基官能化的聚乙二醇(PEG)或pyr进一步加工,以形成相应的PEG或pyr接枝的聚合物。最后,使用上述后聚合点击官能化策略合成了在疏水嵌段中包含接枝graft单元的两亲嵌段共聚物。我们通过透射电子显微镜(TEM)和光散射表明,嵌段共聚物在水性介质中自组装成直径接近48 nm的胶束,并且纳米颗粒的临界胶束浓度(CMC)低于相同尺寸的胶束。由不含pyr的对照嵌段共聚物形成的胶束(CMC值分别为6.3和8.1 mg L-1)。

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