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Phase Separation and Permeability in Polyisobutylene-Based Miktoarm Star Polymers

机译:聚异丁烯基Miktoarm星型聚合物的相分离和磁导率

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The phase behavior of (PS-PIB)(2)-s-PAA miktoarm star terpolymers with varying volume fractions of PAA was investigated directly by transmission electron microscopy, atomic force microscopy, and small-angle X-ray scattering, and indirectly by thermogravimetric analysis and degree of water sorption. The microdomains of (PS-PIB)(2)-s-PAA demonstrate a unique and unexpected progression from highly ordered cylinders, to lower ordered spheres, to gyroid structures with increasing PAA content from 6.6 to 47 wt %. Interestingly, the phase behavior in the miktoarm star polymer system is significantly different from that reported previously for the linear counterpart of similar composition (PAA-PS-PIB-PS-PAA), where a steady progression from cylindrical to lamellar morphology was observed with increasing PAA content. At low PAA concentrations, the morphology is driven primarily by the relative solubility of the components, while at high PAA content the molecular architecture dominates. Thermal annealing demonstrated the thermodynamic stability of the morphologies, indicating the potential for design of novel microstructures for specific applications through precise control of architecture, composition, and interaction parameters of the components. (C) 2016 Wiley Periodicals, Inc.
机译:通过透射电子显微镜,原子力显微镜和小角X射线散射直接研究了具有不同体积PAA的(PS-PIB)(2)-s-PAA缩氨基星形三元共聚物的相行为,并通过热重间接研究了分析和吸水程度。 (PS-PIB)(2)-s-PAA的微区显示出独特且出乎意料的进展,即PAA含量从6.6 wt%增加到47 wt%时,从高度有序的圆柱体到较低阶的球体,再到螺旋结构。有趣的是,米克星型聚合物体系中的相行为与先前报道的类似组成的线性对应物(PAA-PS-PIB-PS-PAA)的相行为显着不同,其中观察到从圆柱状到层状形态的稳定增长PAA内容。在低PAA浓度下,形态主要由组分的相对溶解度决定,而在高PAA含量下,分子结构占主导地位。热退火表明了形态的热力学稳定性,表明通过精确控制组分的结构,组成和相互作用参数,可以设计出用于特定应用的新型微结构。 (C)2016威利期刊公司

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