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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Vesicle-to-spherical micelle-to-tubular nanostructure transition of monomethoxy-poly(ethylene glycol)-poly(trimethylene carbonate) diblock copolymer
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Vesicle-to-spherical micelle-to-tubular nanostructure transition of monomethoxy-poly(ethylene glycol)-poly(trimethylene carbonate) diblock copolymer

机译:单甲氧基-聚(乙二醇)-聚(碳酸三亚甲基酯)二嵌段共聚物的囊泡-球形胶束-管状纳米结构转变

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Recently, we reported a temperature-sensitive biodegradable diblock copolymer of monomethoxy-poly(ethylene glycol)-b-poly(trimethylene carbonate) (mPEG-PTMC; Macromolecules 2007, 40, 5519-5525). In this paper, we report the detailed morphological transition of the polymer in water as a function of polymer concentration and temperature, using cryo-transmission electron microscopy (cryo-TEM). At a low polymer concentration (0.05 wt %), the mPEG-PTMC diblock copolymers formed vesicles in water. On the other hand, vesicle-to-micelle transition was observed as the polymer concentration increased. The polymer predominantly formed micelles above 2.0 wt %. In the 2.0 wt % polymer solution, the mPEG-PTMC underwent spherical micelle-to-tubular nanostructure transition as the temperature increased from 10 to 40 degrees C, and the transition accompanied an increase in turbidity of the polymer aqueous solution due to the increase in the apparent size of the polymer aggregates. Here, we report that the morphology of vesicles, spherical micelles, and tubular nanostructures is reversibly controlled by a thermosensitive polymer of mPEG-PTMC and the variation of the morphology can be carefully traced by using cryo-TEM. This paper will not only provide an important method for morphological control of an amphiphilic polymer but also improve our understanding of a temperature-sensitive transition mechanism of the polymer.
机译:最近,我们报道了单甲氧基-聚(乙二醇)-b-聚(碳酸三亚甲基酯)的温度敏感的可生物降解的二嵌段共聚物(mPEG-PTMC; Macromolecules 2007,40,5519-5525)。在本文中,我们使用低温透射电子显微镜(cryo-TEM)报告了聚合物在水中作为聚合物浓度和温度的函数的详细形态转变。在低聚合物浓度(0.05wt%)下,mPEG-PTMC二嵌段共聚物在水中形成囊泡。另一方面,随着聚合物浓度的增加,观察到囊泡向胶束的转变。聚合物主要形成高于2.0重量%的胶束。在2.0 wt%的聚合物溶液中,随着温度从10摄氏度增加到40摄氏度,mPEG-PTMC经历了球形胶束-管状纳米结构的转变,并且转变伴随着聚合物水溶液浊度的增加,这是由于温度的增加所致。聚合物聚集体的表观尺寸。在这里,我们报告的囊泡,球形胶束和管状纳米结构的形态是可逆地由mPEG-PTMC的热敏聚合物控制的,形态的变化可以通过使用冷冻TEM仔细跟踪。本文不仅为两亲性聚合物的形貌控制提供了重要的方法,而且将增进我们对聚合物的温度敏感转变机理的理解。

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