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Solution self-assembly behavior of A-B-C triblock polymers and the implications for nanoporous membrane fabrication

机译:A-B-C三嵌段聚合物的溶液自组装行为及其对纳米多孔膜制造的影响

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摘要

Self-assembled block polymer membranes are rising to the fore of next-generation separations technologies, and a particular fabrication process of significant interest is the self-assembly and non-solvent induced phase-separation (SNIPS) method. This is because the SNIPS process allows for the facile manipulation of independent variables to produce simultaneously size-and chemically-selective membranes in a scalable manner. Despite significant advances in the SNIPS membrane fabrication procedure, the early-stage solution behavior of many of the polymer-solvent systems employed is still poorly understood. This work addresses the challenges posed by these systems and illuminates guiding relationships for the optimization of SNIPS membrane casting solutions. Specifically, polymer aggregate structures and critical micelle concentration (CMC) values are determined for an A-B-C triblock polymer dissolved in 1,4-dioxane using a combination of scattering and atomic force microscopy techniques. The CMC of this system ranges from 20 to 80 mu M and shows a strong dependence on the polymer composition and solution processing method. Additionally, the shape of the self-assembled structures in solution can be altered by varying these parameters. These studies establish the relationships between polymer solution properties (i.e., the block polymer composition and the processing method) and assembly behavior as they impact membrane fabrication through SNIPS processing. (C) 2017 Wiley Periodicals, Inc.
机译:自组装嵌段聚合物膜正上升至下一代分离技术的前面,并且具有显着兴趣的特定制造过程是自组装和非溶剂诱导的相分离(剪裁)方法。这是因为剪辑过程允许以可伸缩的方式进行独立变量的容易操纵以产生同时尺寸和化学选择性膜。尽管剪切膜制造过程中的显着进展,但所用的许多聚合物溶剂体系的早期溶液行为仍然是较差的。这项工作解决了这些系统构成的挑战,并照亮了用于优化剪切膜铸件解决方案的引导关系。具体地,使用散射和原子力显微镜技术的组合测定溶解在1,4-二恶烷中的A-B-C三嵌段聚合物的聚合物聚集结构和临界胶束浓度(CMC)值。该系统的CMC范围为20至80μm,并显示出对聚合物组合物和溶液加工方法的强依赖性。另外,通过改变这些参数可以改变溶液中的自组装结构的形状。这些研究建立了聚合物溶液性质(即,嵌段聚合物组合物和加工方法)和通过剪切加工的膜制造时的组装行为之间的关系。 (c)2017 Wiley期刊,Inc。

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