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剪切应力对毛细管形式制备的苯乙烯基聚合高内相乳液的径向非均质性和色谱性能的影响。

Effect of shearing stress on the radial heterogeneity and chromatographic performance of styrene-based polymerised high internal phase emulsions prepared in capillary format.

作者信息

Desire Christopher T, Arrua R Dario, Mansour Fotouh R, Bon Stefan A F, Hilder Emily F

机构信息

Australian Centre for Research on Separation Science (ACROSS), School of Physical Sciences, University of Tasmania Hobart Australia.

Future Industries Institute, University of South Australia Adelaide Australia

出版信息

RSC Adv. 2019 Mar 5;9(13):7301-7313. doi: 10.1039/c8ra06188b. eCollection 2019 Mar 1.

Abstract

Poly(styrene--divinylbenzene) monoliths were prepared from the polymerisation of water-in-monomer high internal phase emulsions consisting of a 90 vol% internal phase and stabilised by the non-ionic surfactant Span 80®. The materials were prepared in capillary housings of various internal diameters ranging from 150 μm to 540 μm by simply passing the emulsion through the capillaries. When low shear (300 rpm) was used for emulsification, the droplet and resulting void size distributions were observed to shift towards lower values when the emulsions were forced through capillaries of internal diameter less than 540 μm and all columns exhibited significant radial heterogeneity. When high shear was employed (14 000 rpm) the resulting emulsions preserved their structure when forced through these capillaries and possessed narrower void size distributions with no obvious radial heterogeneity observed upon curing. This resulted in significantly improved chromatographic performance for the separation of a standard mixture of proteins when compared to the materials prepared under low shear.

摘要

聚(苯乙烯 - 二乙烯基苯)整体柱由单体包水型高内相乳液聚合制备而成,该乳液内相体积分数为90%,并由非离子表面活性剂司盘80®稳定。通过简单地使乳液通过内径从150μm到540μm不等的毛细管外壳来制备材料。当采用低剪切(300转/分钟)进行乳化时,观察到当乳液被迫通过内径小于540μm的毛细管时,液滴和由此产生的空隙尺寸分布向较低值移动,并且所有柱都表现出明显的径向不均匀性。当采用高剪切(14000转/分钟)时,所得乳液在被迫通过这些毛细管时保持其结构,并且具有更窄的空隙尺寸分布,固化后未观察到明显的径向不均匀性。与低剪切条件下制备的材料相比,这导致蛋白质标准混合物分离的色谱性能显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6e3/9061218/ca63076a81ba/c8ra06188b-f1.jpg

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