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Superabsorbent, High Porosity, PAMPS-Based Hydrogels through Emulsion Templating

机译:通过乳液模板制备高吸收性,高孔隙率,基于PAMPS的水凝胶

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摘要

Swell! Superabsorbent, mechanically robust, high-porosity hydrogels based on poly(2-acrylamido-2-methyl-1-propanesulfonic acid) have been successfully synthesized by templating within high internal phase emulsions (HIPEs). These hydrogel polyHIPEs (HG-PHs) exhibit unusually high uptakes of water and of artificial urine through structure-and crosslinking-dependent hydrogel-swelling-driven void expansion. An HG-PH with 3.1 mmol g(-1) of highly accessible sulfonic acid groups exhibits a 7 meq NaOH ion exchange capacity per gram polymer and rapid dye absorption. The highly swollen HG-PHs do not fail at compressive strains of up to 60%, they retain water and recover their shapes upon the removal of stress. Unusually, the dry hydrogels have relatively high compressive moduli and achieve relatively high stresses at 70% strain.
机译:胀!通过在高内相乳液(HIPE)中进行模板化,成功地合成了基于聚(2-丙烯酰胺基-2-甲基-1-丙烷磺酸)的超吸收性,机械强度高,高孔隙率的水凝胶。这些水凝胶polyHIPE(HG-PHs)通过依赖结构和交联的水凝胶溶胀驱动的空隙膨胀,表现出异常高的水和人造尿吸收。具有3.1 mmol g(-1)的高度可访问的磺酸基团的HG-PH表现出每克聚合物7 meq NaOH离子交换容量和快速的染料吸收。高度溶胀的HG-PH在高达60%的压缩应变下不会失效,它们保留水分并在消除应力后恢复其形状。通常,干水凝胶具有较高的压缩模量,并在70%应变下获得较高的应力。

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