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温度和浓度对不同浓度的聚(环氧丙烷)-b-聚(环氧乙烷)-b-聚(环氧丙烷)嵌段共聚物在水混合体系中超分子聚集和相行为的影响,2。

Temperature and concentration effects on supramolecular aggregation and phase behavior for poly(propylene oxide)-b-poly(ethylene oxide)-b-poly(propylene oxide) copolymers of different concentration in aqueous mixtures, 2.

机构信息

Università degli Studi di Napoli Federico II, Dipartimento di Chimica, Via Cinthia, 80126 Napoli (NA), Italy.

出版信息

J Colloid Interface Sci. 2011 Jul 1;359(1):179-88. doi: 10.1016/j.jcis.2011.02.068. Epub 2011 Mar 8.

DOI:10.1016/j.jcis.2011.02.068
PMID:21497823
Abstract

The micro- and mesoscopic structure of reverse Pluronic 25R4 in aqueous mixtures has been studied by SANS, SAXS and shear rheology. These techniques have been able to give a deep insight into the complex structure of the system phase diagram, that includes an isotropic water-rich liquid phase L(1), and liquid crystalline phases with hexagonal, E, or lamellar order, D. Particular attention has been paid to the isotropic water-rich phase L(1), which has a large stability region in the temperature-composition phase diagram. This region is crossed by a large "cloudy zone". Below it, namely at low temperature and composition, SANS data show the presence of polymer unimers in a gaussian coil conformation. Above the "cloudy zone", at higher temperature and composition, the L(1) phase is structured as a network of interconnected multimeric micelles. Rheology adds information about the structuring of the L(1) phase showing its incipient hexagonal pre-structuring. This technique is also able to highlight the defective structure of the E phase itself. In the temperature and concentration ranges in which a lamellar phase D is present, SANS and SAXS results are in complete agreement, showing how interlamellar distance is influenced by both polymer composition and temperature according to an "ideal deswelling" or a "not ideal swelling" mechanism. In addition, in the D phase rheology suggests the presence of densely packed vesicles.

摘要

通过小角和广角 X 射线散射(SAXS)以及剪切流变学研究了反向 Pluronic 25R4 在水混合物中的微观和介观结构。这些技术能够深入了解系统相图的复杂结构,其中包括各向同性富水液相 L(1)和具有六方、E 或层状有序的液晶相 D。特别关注各向同性富水相 L(1),它在温度-组成相图中有一个很大的稳定区域。该区域穿过一个大的“云区”。在其下方,即在低温和低组成下,小角散射数据显示聚合物单体以高斯线圈构象存在。在“云区”上方,在较高的温度和组成下,L(1)相结构为相互连接的多聚物胶束网络。流变学提供了有关 L(1)相结构的信息,表明其具有初始的六方预结构。该技术还能够突出 E 相本身的缺陷结构。在存在层状相 D 的温度和浓度范围内,小角和广角 X 射线散射结果完全一致,表明根据“理想去溶胀”或“非理想溶胀”机制,层间距离如何受到聚合物组成和温度的影响。此外,在 D 相中,流变学表明存在密集堆积的囊泡。

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