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用于形成相分离膜的软光刻图案化水凝胶模具的耐久性和可恢复性

Durability and Recoverability of Soft Lithographically Patterned Hydrogel Molds for the Formation of Phase Separation Membranes.

作者信息

Asad Asad, Rastgar Masoud, Nazaripoor Hadi, Sadrzadeh Mohtada, Sameoto Dan

机构信息

Department of Mechanical Engineering, University of Alberta, Edmonton, AB T6G 1H9, Canada.

出版信息

Micromachines (Basel). 2020 Jan 19;11(1):108. doi: 10.3390/mi11010108.

Abstract

Hydrogel-facilitated phase separation (HFPS) has recently been applied to make microstructured porous membranes by modified phase separation processes. In HFPS, a soft lithographically patterned hydrogel mold is used as a water content source that initiates the phase separation process in membrane fabrication. However, after each membrane casting, the hydrogel content changes due to the diffusion of organic solvent into the hydrogel from the original membrane solution. The absorption of solvent into the hydrogel mold limits the continuous use of the mold in repeated membrane casts. In this study, we investigated a simple treatment process for hydrogel mold recovery, consisting of warm and cold treatment steps to provide solvent extraction without changing the hydrogel mold integrity. The best recovery result was 96%, which was obtained by placing the hydrogel in a warm water bath (50 °C) for 10 min followed by immersing in a cold bath (23 °C) for 4 min and finally 4 min drying in air. This recovery was attributed to nearly complete solvent extraction without any deformation of the hydrogel structure. The reusability of hydrogel can assist in the development of a continuous membrane fabrication process using HFPS.

摘要

水凝胶促进相分离(HFPS)最近已应用于通过改进的相分离工艺制备微结构多孔膜。在HFPS中,软光刻图案化的水凝胶模具用作含水量源,引发膜制造中的相分离过程。然而,每次浇铸膜后,由于有机溶剂从原始膜溶液扩散到水凝胶中,水凝胶含量会发生变化。溶剂被水凝胶模具吸收限制了该模具在重复膜浇铸中的连续使用。在本研究中,我们研究了一种简单的水凝胶模具回收处理工艺,该工艺包括温热和冷处理步骤,以在不改变水凝胶模具完整性的情况下进行溶剂萃取。最佳回收结果为96%,这是通过将水凝胶置于温水浴(50°C)中10分钟,然后浸入冷水浴(23°C)中4分钟,最后在空气中干燥4分钟获得的。这种回收归因于几乎完全的溶剂萃取,且水凝胶结构没有任何变形。水凝胶的可重复使用性有助于开发使用HFPS的连续膜制造工艺。

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