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Thermoresponsive PNIPAAM bottlebrush polymers with tailored side-chain length and end-group structure

机译:具有定制侧链长度和端基结构的热敏PNIPAAM牙刷聚合物

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摘要

We explore the phase behaviour, solution conformation, and interfacial properties of bottlebrush polymers with side-chains comprised of poly(N-isopropylacrylamide) (PNIPAAM), a thermally responsive polymer that exhibits a lower critical solution temperature (LCST) in water. PNIPAAM bottlebrush polymers with controlled side-chain length and side-chain end-group structure are prepared using a モgrafting-throughヤ technique. Due to reduced flexibility of bottlebrush polymer side-chains, side-chain end-groups have a disproportionate effect on bottlebrush polymer solubility and phase behaviour. Bottlebrush polymers with a hydrophobic end-group have poor water solubilities and depressed LCSTs, whereas bottlebrush polymers with thiol-terminated side-chains are fully water-soluble and exhibit an LCST greater than that of PNIPAAM homopolymers. The temperature-dependent solution conformation of PNIPAAM bottlebrush polymers in D2O is analyzed by small-angle neutron scattering (SANS), and data analysis using the Guinier-Porod model shows that the bottlebrush polymer radius decreases as the temperature increases towards the LCST for PNIPAAM bottlebrush polymers with relatively long 9 kg mol1 sidechains. Above the LCST, PNIPAAM bottlebrush polymers can form a lyotropic liquid crystal phase in water. Interfacial tension measurements show that bottlebrush polymers reduce the interfacial tension between chloroform and water to levels comparable to PNIPAAM homopolymers without the formation of microemulsions, suggesting that bottlebrush polymers are unable to stabilize highly curved interfaces. These results demonstrate that bottlebrush polymer side-chain length and flexibility impact phase behavior, solubility, and interfacial properties.
机译:我们探索了具有聚(N-异丙基丙烯酰胺)(PNIPAAM)侧链的瓶刷聚合物的相行为,溶液构象和界面特性,该聚合物是一种在水中显示出较低临界溶液温度(LCST)的热响应性聚合物。使用“嫁接”技术制备具有受控侧链长度和侧链端基结构的PNIPAAM瓶刷聚合物。由于洗瓶刷聚合物侧链的柔韧性降低,侧链端基对洗瓶刷聚合物的溶解度和相行为具有不成比例的影响。具有疏水端基的洗瓶刷聚合物的水溶性差,LCST降低,而具有巯基封端的侧链的洗瓶刷聚合物则是完全水溶性的,并且其LCST大于PNIPAAM均聚物。通过小角度中子散射(SANS)分析了D2O中PNIPAAM洗瓶刷聚合物的温度依赖性溶液构象,并且使用Guinier-Porod模型进行的数据分析表明,随着温度升高,PNIPAAM洗瓶刷聚合物半径朝LCST方向减小具有相对较长的9 kg mol1侧链的聚合物。在LCST上方,PNIPAAM瓶刷聚合物可在水中形成溶致液晶相。界面张力测量结果表明,牙刷聚合物可将氯仿和水之间的界面张力降低到与PNIPAAM均聚物相当的水平,而不会形成微乳液,这表明牙刷聚合物无法稳定高度弯曲的界面。这些结果表明,牙刷聚合物的侧链长度和柔韧性会影响相行为,溶解度和界面特性。

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