Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an, Shaanxi Province, 710062, P. R. China.
Macromol Rapid Commun. 2018 Mar;39(6):e1700684. doi: 10.1002/marc.201700684. Epub 2018 Jan 3.
A novel hyperbranched lower critical solution temperature (LCST) polymer with sharp temperature and CO -responsive behaviors is presented in this study. The target polymer of hyperbranched poly(oligo(ethylene glycol) (HBPOEG) is constructed using POEG as the backbone and tertiary amines as branch points. Phase transition of HBPOEG in aqueous solution is investigated by heating and cooling the system; the results indicate that HBPOEG in aqueous solution has a concentration-dependent phase transition behavior with excellent repeatability. Moreover, LCST of HBPOEG can be tuned by bubbling CO into the solution, as the tertiary amines can be protonated and the solubility of the polymer would increase by bubbling CO into the system, leading to an increase of LCST of the polymer. Further bubbling N to remove CO can reversibly turn back the LCST to its original value. This backbone-based hyperbranched LCST polymer with both CO and temperature responsiveness can be applied in application areas like drug delivery, gene transfection, functional coatings, etc.
本研究提出了一种具有新颖的超支化下临界溶液温度(LCST)和 CO 响应行为的聚合物。该超支化聚(低聚乙二醇)(HBPOEG)的目标聚合物以 POEG 为骨架,叔胺为支化点构建。通过加热和冷却系统来研究 HBPOEG 在水溶液中的相转变,结果表明 HBPOEG 在水溶液中具有浓度依赖性的相转变行为,具有良好的可重复性。此外,通过向溶液中鼓入 CO 可以调节 HBPOEG 的 LCST,因为叔胺可以质子化,并且通过向系统中鼓入 CO 会增加聚合物的溶解度,从而导致聚合物的 LCST 升高。进一步鼓入 N2 去除 CO 可以使 LCST 可逆地恢复到原始值。这种基于骨架的具有 CO 和温度双重响应性的超支化 LCST 聚合物可以应用于药物输送、基因转染、功能涂层等领域。