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Synthesis and surface properties of amphiphilic star-shaped and dendrimer-like copolymers based on polystyrene core and poly(ethylene oxide) corona

机译:基于聚苯乙烯核和聚环氧乙烷电晕的两亲星形和树枝状大分子共聚物的合成和表面性能

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Polystyrene (PS)/poly(ethylene oxide) (PEO) amphiphilic star-block copolymers and dendrimer-like architectures were prepared using a core-first method. PS stars were first obtained by atom transfer radical polymerization using three and four functional benzyl halides. The chain ends of these star polymers were subsequently modified to generate either the same or twice the number of hydroxyl groups that served to grow the PEO blocks by anionic polymerization of ethylene oxide. Well-defined PSn-b-PEOn (n = 3 or 4) stars and PS3-b-PEO6 dendrimer-like copolymers exhibiting a monomodal and narrow molar mass distribution were obtained in this way. When spread at the air/water interface, these stars proved to be surface active, forming stable reproducible films. Isotherms yielded A(0) (theoretical surface area occupied by a film at zero pressure) values, allowing for quantitative comparisons between the stars and linear diblock analogues. Both structures demonstrated similar behavior, passing from liquid expanded regions to highly compressed structures at comparable molecular areas. [References: 34]
机译:聚苯乙烯(PS)/聚环氧乙烷(PEO)两亲性星型嵌段共聚物和类树枝状结构是使用先核方法制备的。首先通过使用三个和四个官能苄基卤化物的原子转移自由基聚合获得PS星。这些星形聚合物的链端随后被改性以产生相同或两倍数量的羟基,这些羟基通过环氧乙烷的阴离子聚合作用来生长PEO嵌段。以这种方式获得了表现出单峰和窄摩尔质量分布的界限分明的PSn-b-PEOn(n = 3或4)星和PS3-b-PEO6树状聚合物状共聚物。当这些星在空气/水界面扩散时,它们具有表面活性,形成稳定的可复制膜。等温线得出A(0)(膜在零压力下占据的理论表面积)值,从而可以对恒星和线性二嵌段类似物进行定量比较。两种结构都表现出相似的行为,在可比较的分子区域从液体膨胀区域变为高度压缩的结构。 [参考:34]

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