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Kinetics of Morphological Transition between Cylindrical and Spherical Micelles in a Mixture of Anionic-Neutral and Cationic-Neutral Block Copolymers Studied by Time-Resolved SAXS and USAXS

机译:圆柱形和阳离子 - 中性嵌段共聚物中圆柱形和球形胶束之间的形态转变动力学和阳离子 - 中性嵌段共聚物的形态转变

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This study is concerned with the morphological transition kinetics of polyelectrolyte complex micelles formed from an anionic neutral block copolymer and a cationic neutral block copolymer in aqueous NaCl solution. The transformation was induced by changing the mixing ratio of the anionic and cationic monomer units in the copolymers. The kinetics of the morphological transition was directly tracked by time-resolved (ultra) small-angle X-ray scattering coupled with rapid mixing of the block copolymer components by a stopped flow apparatus. The transformation from cylindrical to spherical micelles upon changing the mixing ratio of the copolymers was reversible, and the process occurred via the random scission of the cylindrical micelles along their contours. The reverse transition from spherical to cylindrical micelles was found to be a slow process with high activation energy.
机译:该研究涉及由阴离子中性嵌段共聚物和阳离子中性嵌段共聚物中的聚电解质复合胶束和NaCl溶液中的阳离子中性嵌段共聚物的形态过渡动力学。 通过改变共聚物中的阴离子和阳离子单体单元的混合比来诱导转化。 通过止动(超)小角X射线散射直接跟踪形态转变的动力学,其通过停止的流量装置与嵌段共聚物组分的快速混合耦合。 在改变共聚物的混合比时,从圆柱形到球形胶束的转化是可逆的,并且通过沿着它们的轮廓的圆柱形胶束的随机裂变发生该方法。 发现从球形到圆柱形胶束的反向过渡是具有高激活能量的缓慢过程。

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