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Bridging the Gap in the Micellar Transformation from Cylinders to VesiclesBridging the Gap in the Micellar Transformation from Cylinders to Vesicles

机译:弥合从汽缸到囊泡的胶束转换中的间隙弥合从汽缸到囊泡的胶束转换中的间隙

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The micelles of polystyrene-block-poly (acrylic acid) (PS154-b-PAA49) are made to transform slowly in mixed solvent,allowing continual trapping of the various intermediates. During the transformation from cylindrical to vesicular micelles,it appears that a section of the cylinder first flattens to give a lamellar section,which then depresses to give a bowl-like moiety,before finally converting to a fully enclosed vesicle. Most part of this transformation involves the "flow" of polymer domains without mingling of the hydrophobic and hydrophilic domains. On the bases of the literature and the observation in this work,it is proposed that the reduction of surface-to-volume ratio provides the thermodynamic driving force for the cylinder-to-vesicle transformation,whereas molecular reorganization within the polymer domains creates the kinetic barrier. From the point of view of molecular interactions, the "flow" of polymer domain involves a low barrier,whereas the merging of two micelles,the severing of cylindrical micelles,and the closing of partial vesicles encounter high barriers. Moreover, the kinetic barrier is reduced when PSPAA containing shorter PAA blocks is used,or when the PAA block are protonated. This mechanistic proposal explains the kinetically controlled transformation pathway and structural features of the observed intermediates.
机译:使聚苯乙烯嵌段聚(丙烯酸)(PS154-b-PAA49)的胶束在混合溶剂中缓慢转化,从而允许不断捕集各种中间体。在从圆柱状胶束转变为水泡胶束的过程中,似乎先将圆柱体的一部分展平成片状,然后再压成碗状部分,最后转变为完全封闭的囊泡。这种转变的大部分涉及聚合物域的“流动”,而不会混合疏水域和亲水域。在文献和工作观察的基础上,提出表面-体积比的减小为圆柱到囊泡的转变提供了热力学驱动力,而在聚合物域内的分子重组产生了动力学。屏障。从分子相互作用的角度看,聚合物结构域的“流动”具有较低的障碍,而两个胶束的合并,圆柱状胶束的切断以及部分囊泡的封闭遇到较高的障碍。而且,当使用包含较短PAA嵌段的PSPAA时,或当PAA嵌段被质子化时,动力学势垒降低。该机理建议解释了所观察到的中间体的动力学控制的转化途径和结构特征。

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