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中空纤维纺丝过程中嵌段共聚物的自组装:原位小角X射线散射研究

Self-assembly of block copolymers during hollow fiber spinning: an in situ small-angle X-ray scattering study.

作者信息

Sankhala Kirti, Wieland D C Florian, Koll Joachim, Radjabian Maryam, Abetz Clarissa, Abetz Volker

机构信息

Helmholtz-Zentrum Geesthacht, Institute of Polymer Research, Max-Planck-Strasse 1, 21502 Geesthacht, Germany.

出版信息

Nanoscale. 2019 Apr 23;11(16):7634-7647. doi: 10.1039/c8nr06892e.

Abstract

We investigated the self-assembly of block copolymers during hollow fiber membrane (HFM) fabrication by conducting in situ small angle X-ray scattering (SAXS) and ex situ scanning electron microscopy (SEM) studies. SAXS enables us to follow the structural rearrangements after extrusion at different distances from the spinning nozzle. The kinetics of the spinning process is examined as a function of the composition of block copolymer solutions and the spinning parameters. We studied the influence of the extrusion rate on the block copolymer microdomains and their self-assembly in weakly segregated and ordered solutions. The addition of magnesium acetate (MgAc2) leads to the ordering of micelles in the block copolymer solution already at lower polymer concentrations and shows an increased number of micelles with larger domain spacing as compared to the pristine solution. The SAXS data show the effect of shear within the spinneret on the self-assembly of block copolymers and the kinetics of phase separation after extrusion. It is observed that the ordering of micelles in solutions is decreased as indicated by the loss of crystallinity while high extrusion rates orient the structures perpendicular to the fiber direction. The structural features obtained from in situ SAXS experiments are correlated to the structure in the block copolymer solutions in the absence of shear and the morphologies in flat sheet and HF membranes obtained by ex situ SEM. This allows a systematic and comparative study of the effects varying the microdomain ordering within different block copolymer solutions and the formed membrane structures.

摘要

我们通过进行原位小角X射线散射(SAXS)和非原位扫描电子显微镜(SEM)研究,对中空纤维膜(HFM)制造过程中嵌段共聚物的自组装进行了研究。SAXS使我们能够跟踪从纺丝喷嘴挤出后在不同距离处的结构重排。研究了纺丝过程的动力学与嵌段共聚物溶液组成和纺丝参数的关系。我们研究了挤出速率对弱分离和有序溶液中嵌段共聚物微区及其自组装的影响。与原始溶液相比,添加醋酸镁(MgAc2)会导致在较低聚合物浓度下嵌段共聚物溶液中的胶束有序化,并且显示出具有更大域间距的胶束数量增加。SAXS数据显示了喷丝头内剪切对嵌段共聚物自组装和挤出后相分离动力学的影响。观察到,溶液中胶束的有序化程度降低,这表现为结晶度的损失,而高挤出速率使结构垂直于纤维方向取向。从原位SAXS实验获得的结构特征与无剪切时嵌段共聚物溶液中的结构以及通过非原位SEM获得的平板膜和中空纤维膜的形态相关。这使得能够对不同嵌段共聚物溶液中微区有序化变化的影响以及形成的膜结构进行系统的比较研究。

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