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Chain extension as a strategy for the development of improved reverse thermo-responsive polymers

机译:扩链作为开发改进的反向热响应性聚合物的策略

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摘要

The hypothesis that chain extension can be harnessed to the generation of improved reverse thermo-responsive polymers was tested by following two basic synthetic pathways: (1) the polymerization of poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) (PEO-PPO-PEO) triblocks using hexamethylene diisocyanate (HDI) as chain extender and (2) the covalent binding of poly(ethylene glycol) and poly(propylene glycol) chains, using phosgene as the connecting molecule. While in the former, the basic amphiphilic repeating unit is known for its own RTG behavior, the latter polymers consist of segments incapable of exhibiting a reverse thermal gelation (RTG) of their own. Dynamic light scattering (DLS) measurements revealed that the nanostructures formed by the chain extended polymers were markedly larger than those generated by PEO-PPO-PEO triblocks. While the size of Pluronic F127 micelles ranged from 15 to 20 nm, the higher molecular weight amphiphiles generated much larger nanostructures (20-400 nm). The chain extended polymers achieved much higher viscosities and their gels displayed enhanced long-term stability at 37 ℃.
机译:通过以下两个基本合成途径测试了可以利用扩链来生成改进的逆向热响应性聚合物的假设:(1)聚环氧乙烷-聚环氧丙烷-聚环氧乙烷的聚合(PEO-PPO-PEO)三嵌段,使用六亚甲基二异氰酸酯(HDI)作为扩链剂,以及(2)使用光气作为连接分子,使聚乙二醇和聚丙二醇链共价结合。在前者中,基本的两亲性重复单元因其自身的RTG行为而闻名,而后者的聚合物由无法表现出自身反向热凝胶化(RTG)的链段组成。动态光散射(DLS)测量表明,由扩链聚合物形成的纳米结构明显大于由PEO-PPO-PEO三嵌段生成的纳米结构。虽然Pluronic F127胶束的大小在15到20 nm之间,但较高分子量的两亲物会生成更大的纳米结构(20-400 nm)。链增长的聚合物具有更高的粘度,其凝胶在37℃下显示出更高的长期稳定性。

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