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Nanoporous furfuryl-imine-chitosan fibers as a new pathway towards eco-materials for CO2 adsorption

机译:纳米孔糠醛 - 壳聚糖纤维作为朝向CO 2吸附的生态材料的新途径

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摘要

The goal of the paper was to design a new pathway towards eco-materials suitable for CO2 capture, by functionalization of nanoporous chitosan fibers with monoaldehydes via imination. To this end, nanoporous chitosan fibers were prepared by electrospinning and further reacted with furfural. Their morphology was investigated by SEM and AFM microscopies and revealed the formation of a network of nanoporous submicrometric fibers. The successful imination was proved by FTIR, XPS, and NMR spectroscopies. As a proof of concept, the CO2 adsorption isotherms displayed enhanced CO2 adsorption of the furfuryl-imine-chitosan fibers compared to pristine ones, indicating the imination of porous chitosan fibers as a feasible method to new eco-materials for CO2 adsorption.
机译:本文的目的是通过通过化成形化单醛醛酸纤维的纳米多孔壳聚糖纤维来设计适用于CO2捕获的生态材料的新途径。 为此,通过静电纺丝制备纳米多孔壳聚糖纤维并进一步与糠醛反应。 通过SEM和AFM显微镜研究了它们的形态,并揭示了纳米多孔潜水纤维网络的形成。 通过FTIR,XPS和NMR光谱证明了成功的模拟。 作为概念证据,与原始的CO 2吸附等温线显示出增强糠醛 - 亚胺 - 壳聚糖纤维的CO 2吸附,表明多孔壳聚糖纤维作为新的ECO吸附的新生态材料的可行方法。

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