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基于醋酸纤维素和纳米纤维素晶体的多孔复合膜的静电纺丝和静电喷雾法制备。

Porous composite membranes based on cellulose acetate and cellulose nanocrystals via electrospinning and electrospraying.

机构信息

Division of Materials and Environmental Chemistry, Stockholm University, 10691 Stockholm, Sweden.

出版信息

Carbohydr Polym. 2017 Nov 1;175:149-157. doi: 10.1016/j.carbpol.2017.07.048. Epub 2017 Jul 20.

Abstract

Porous and non-porous cellulose acetate (CA) - cellulose nanocrystal (CNC) electrospun nanocomposite fibers and electrosprayed-electrospun composite membranes were fabricated using two different binary solvent systems. To evaluate the expression of CNC as the active entity in the membrane, dye adsorption studies were carried out using Victoria Blue. To overcome the low surface area of thick porous fibers, a porous electrosprayed-electrospun composite has developed which exhibited 98% dye removal compared to non-porous counterparts (67.9%). The porous membrane with CNC showed an increase of 38mV in surface zeta potential compared to 9mV increases in the case of the nonporous membrane and after the dye adsorption, it maintained the negative charge, indicating that further adsorption is feasible. Moreover, the mechanical properties of porous fibers were found to be ten-fold better than that of nonporous fibers. Creating porous CA-CNC composites is demonstrated as a tool for ensuring better exposure of active materials during the adsorption reaction.

摘要

制备了具有不同二元溶剂体系的多孔和非多孔醋酸纤维素(CA)-纤维素纳米晶体(CNC)静电纺纳米复合纤维和电喷-静电纺复合膜。为了评估 CNC 在膜中的有效实体的表达,使用维多利亚蓝进行了染料吸附研究。为了克服厚多孔纤维的低表面积,开发了一种多孔电喷-静电纺复合膜,与非多孔纤维相比,其染料去除率达到 98%(67.9%)。与非多孔膜相比,含有 CNC 的多孔膜的表面zeta 电位增加了 38mV,而非多孔膜仅增加了 9mV,并且在染料吸附后,它保持了负电荷,表明进一步的吸附是可行的。此外,多孔纤维的机械性能比非多孔纤维好十倍。证明了多孔 CA-CNC 复合材料的制备是确保在吸附反应过程中更好地暴露活性材料的一种工具。

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