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Cellulose-based, highly porous polyurethanes templated within non-aqueous high internal phase emulsions

机译:基于纤维素的高度多孔聚氨酯在非含水高内相乳液中模板化

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摘要

Cellulose is one of the most abundant resources in nature. Cellulose-based porous monoliths have been fabricated by direct drying of oil-in-water high internal phase emulsions (HIPEs) stabilized using either cellulose derivatives or surface-modified cellulose. The resulting cellulose-based porous polymers, however, were usually fragile, reflecting the lack of crosslinking. Herein, we report a new strategy to fabricate cellulose-based porous materials (polyurethane polyHIPEs, PU polyHIPEs) templated within non-aqueous HIPEs through the covalent crosslinking between isocyanates and unmodified cellulose. The PU polyHIPEs exhibited interconnected macroporous structures and exhibited tunable wettability from hydrophilicity/oleophilicity to hydrophobicity/oleophilicity. The PU polyHIPEs were able to absorb a wide variety of oils, exhibiting relatively large capacities and high absorption rates. We further showed that the PU polyHIPEs were robust, and they did not fail under compressive stress even at strains of 70%. The robustness, large absorption capacities, rapid absorption, and hydrophobicity/oleophilicity make these cellulose-based PU polyHIPEs suitable for oil absorption and/or oil-water separation applications.
机译:纤维素是本质上最丰富的资源之一。通过使用纤维素衍生物或表面改性的纤维素直接干燥稳定的水质高内相乳液(Hipes),通过直接干燥纤维素的多孔整料。然而,所得纤维素的多孔聚合物通常是脆弱的,反映不缺乏交联。在此,我们报告了通过异氰酸酯和未改性的纤维素之间的共价交联在非水臀部内模拟的基于纤维素的多孔材料(聚氨酯聚合物,PU Polyheches)制造基于纤维素的多孔材料(聚氨酯聚合物,PU Polyheches)的新策略。 PU Polyhepes表现出互连的大孔结构,并从亲水性/疏油性与疏水性/疏油性表现出可调润湿性。 PU聚合能够吸收各种各样的油,表现出相对大的容量和高吸收率。我们进一步表明,PU Polyhifees仍然是强大的,即使在70%的菌株中,它们也没有在压缩应力下失效。鲁棒性,大吸收能力,快速吸收和疏水性/疏油性使得这些基于纤维素的PU聚合,适用于吸油和/或油水分离应用。

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