Kulygin Olga, Silverstein Michael S
Department of Materials Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.
Soft Matter. 2007 Nov 14;3(12):1525-1529. doi: 10.1039/b711610a.
Hydrogels, such as those based on poly(2-hydroxyethyl methacrylate) (PHEMA), are hydrophilic three dimensional network structures that undergo extensive swelling in water. PolyHIPEs are highly porous, crosslinked polymers typically synthesized within high internal phase emulsions (HIPEs). This research describes materials with enhanced water absorption that combine hydrogel water absorption with capillary action by synthesizing PHEMA-based polyHIPEs within oil-in-water HIPEs. The variation in the ,-methylenebisacrylamide (MBAM) crosslinking comonomer content yields a narrow synthesis window in which water-swollen micro-gel particles phase separate, agglomerate, and form a heterogeneous polyHIPE wall structure with nanoscale porosity. Surprisingly, a hydrogel polyHIPE with a relatively high MBAM content also had the highest surface area and the highest water absorption. Ultimately, it is the influence of the MBAM content on the polymer hydrophilicity and on the porous structure that determines its effects on the properties.
水凝胶,例如基于聚甲基丙烯酸2-羟乙酯(PHEMA)的水凝胶,是亲水性三维网络结构,在水中会发生大量溶胀。聚高内相乳液聚合物(PolyHIPEs)是高度多孔的交联聚合物,通常在高内相乳液(HIPEs)中合成。本研究描述了通过在水包油型HIPEs中合成基于PHEMA的PolyHIPEs,将水凝胶吸水性与毛细作用相结合从而具有增强吸水性的材料。N,N'-亚甲基双丙烯酰胺(MBAM)交联共聚单体含量的变化产生了一个狭窄的合成窗口,在这个窗口内,水溶胀的微凝胶颗粒发生相分离、团聚,并形成具有纳米级孔隙率的异质PolyHIPE壁结构。令人惊讶的是,具有相对较高MBAM含量的水凝胶PolyHIPE也具有最高的表面积和最高的吸水率。最终,正是MBAM含量对聚合物亲水性和多孔结构的影响决定了其对性能的作用。