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Facilitated Structure Formation in Isoporous Block Copolymer Membranes upon Controlled Evaporation by Gas Flow

机译:通过气流控制蒸发可促进等孔嵌段共聚物膜的结构形成

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摘要

The conventional fabrication of isoporous membranes via the evaporation-induced self-assembly of block copolymers in combination with non-solvent induced phase separation (SNIPS) is achieved under certain environmental conditions. In this study, we report a modification in the conventional fabrication process of (isoporous) flat sheet membranes in which the self-assembly of block copolymers is achieved by providing controlled evaporation conditions using gas flow and the process is introduced as gSNIPS. This fabrication approach can not only trigger and control the microphase separation but also provides isoporous structure formation in a much broader range of solution concentrations and casting parameters, as compared to fabrication under ambient, uncontrolled conditions. We systematically investigated the structure formation of the fabrication of integral asymmetric isoporous membranes by gSNIPS. A quantitative correlation between the evaporation conditions (causing solvent evaporation and temperature drop) and the self-assembly of block copolymers beginning from the top layer up to a certain depth, orientation of pores in the top layer and the substructure morphology has been discussed empirically.
机译:在某些环境条件下,通过蒸发诱导的嵌段共聚物自组装与非溶剂诱导的相分离(SNIPS)的结合,常规制备了异孔膜。在这项研究中,我们报告了对(等孔)平板膜的常规制造工艺的改进,其中嵌段共聚物的自组装是通过使用气流提供受控的蒸发条件来实现的,该工艺作为gSNIPS引入。与在环境不受控制的条件下进行制造相比,这种制造方法不仅可以触发和控制微相分离,而且还可以在更大范围的溶液浓度和浇铸参数范围内提供等孔结构的形成。我们系统地研究了通过gSNIPS制备整体非对称等孔膜的结构形成。经验地讨论了蒸发条件(引起溶剂蒸发和温度降低)与嵌段共聚物自顶层开始直至一定深度,顶层中孔的方向和子结构形态之间的定量关系。

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