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P123/水/乙醇三元相图的定量小角X射线散射分析

Quantitative SAXS analysis of the P123/water/ethanol ternary phase diagram.

作者信息

Soni S S, Brotons G, Bellour M, Narayanan T, Gibaud A

机构信息

Laboratoire de Physique de l'Etat Condensé, Faculté des Sciences, Université du Maine, UMR 6087 CNRS, 72085 Le Mans, Cedex 09, France.

出版信息

J Phys Chem B. 2006 Aug 10;110(31):15157-65. doi: 10.1021/jp062159p.

Abstract

The ternary phase diagram of the amphiphilic triblock copolymer PEO-PPO-PEO ((EO)(20)(PO)(70)(EO)(20) commercialized under the generic name P123), water, and ethanol has been investigated at constant temperature (T = 23 degrees C) by small-angle X-ray scattering (SAXS). The microstructure resulting from the self-assembly of the PEO-PPO-PEO block copolymer varies from micelles in solution to various types of liquid crystalline phases such as cubic, 3D hexagonal close packed spheres (HCPS), 2D hexagonal, and lamellar when the concentration of the polymer is increased. In the isotropic liquid phase, the micellar structural parameters are obtained as a function of the water-ethanol ratio and block copolymer concentration by fitting the scattering data to a model involving core-shell form factor and a hard sphere structure factor of interaction. The micellar core, the aggregation number, and the hard sphere interaction radius decrease when increasing the ethanol/water ratio in the mixed solvent. We show that the fraction of ethanol present in the core is responsible for the swelling of the PPO blocks. In the different liquid crystalline phases, structural parameters such as lattice spacing, interfacial area of PEO block, and aggregation number are also evaluated. In addition to classical phases such as lamellar, 2D hexagonal, and liquid isotropic phases, we have observed a two-phase region in which cubic Fm3m and P6(3)mmc (hexagonally close packing of spheres (HCPS)) phases coexist. This appears at 30% (w/w) of P123 in pure water and with 5% (w/w) of ethanol. At 10% (w/w) ethanol, only the HCPS phase remains present.

摘要

采用小角X射线散射(SAXS)技术,在恒温(T = 23℃)条件下研究了两亲性三嵌段共聚物聚环氧乙烷-聚环氧丙烷-聚环氧乙烷((EO)₂₀(PO)₇₀(EO)₂₀,商品名P123)、水和乙醇的三元相图。当聚合物浓度增加时,PEO-PPO-PEO嵌段共聚物自组装形成的微观结构从溶液中的胶束变化为各种类型的液晶相,如立方相、三维六方密堆积球(HCPS)相、二维六方相和层状相。在各向同性液相中,通过将散射数据拟合到一个包含核壳形状因子和硬球相互作用结构因子的模型,获得了胶束结构参数随水-乙醇比和嵌段共聚物浓度的变化关系。当混合溶剂中乙醇/水比增加时,胶束核、聚集数和硬球相互作用半径减小。我们表明,存在于核中的乙醇分数是导致PPO嵌段膨胀的原因。在不同的液晶相中,还评估了诸如晶格间距、PEO嵌段的界面面积和聚集数等结构参数。除了层状相、二维六方相和各向同性液相等经典相之外,我们还观察到一个两相区域,其中立方Fm3m相和P6₃mmc(球六方密堆积(HCPS))相共存。这出现在纯水中P123含量为30%(w/w)且乙醇含量为5%(w/w)的情况下。在乙醇含量为10%(w/w)时,仅存在HCPS相。

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