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Ion-Responsive Channels of Zwitterion-Carbon Nanotube Membrane for Rapid Water Permeation and Ultrahigh Mono-/Multivalent Ion Selectivity

机译:两性离子-碳纳米管膜的离子响应通道,可实现快速的水渗透和超高的单价/多价离子选择性

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摘要

The rational combination of polymer matrix and nanostructured building blocks leads to the formation of composite membranes with unexpected capability of selectivity of monovalent electrolytes and water, which affords the feasibility to effeciently remove harmful ions and neutral molecules from the environment of concentrated salines. However, the multivalent ion rejection in salined water of routine nanocomposite membranes was less than 98% when ion strength is high, resulting in a poor ion selectivity far below the acceptable value. In this contribution, the ion-responsive membrane with zwitterion-carbon nanotube (ZCNT) entrances at the surface and nanochannels inside membrane has been proposed to obtain ultrahigh multivalent ion rejection. The mean effective pore diameter of ZCNT membrane was dedicated tuned from 1.24 to 0.54 nm with the rise in Na2SO4 concentration from 0 to 70 mol m(-3) as contrary to the conventional rejection drop in carbon nanotube (CNT) membrane. The ultrahigh selective permeabilities of monovalent anions against divalent anions of 93 and against glucose of 5.5 were obtained on ZCNT membrane, while such selectivities were only 20 and 1.6 for the pristine CNT membrane, respectively. The ZCNT membranes have potential applications in treatment of salined water with general NaCl concentration from 100 to 600 mol m(-3), which are widely applicable in desalination, food, and biological separation processes.
机译:聚合物基质和纳米结构构件的合理组合导致形成具有意想不到的单价电解质和水选择性能力的复合膜,从而为从浓盐水环境中有效去除有害离子和中性分子提供了可行性。然而,当离子强度高时,常规纳米复合膜在盐水中的多价离子截留率小于98%,导致差的离子选择性,远低于可接受值。在这种贡献中,已经提出了在表面具有两性离子碳纳米管(ZCNT)入口且膜内部具有纳米通道的离子响应膜,以获得超高的多价离子截留率。与碳纳米管(CNT)膜的常规截留下降相反,ZCNT膜的平均有效孔径专门从1.24调整为0.54 nm,Na2SO4浓度从0升高到70 mol m(-3)。在ZCNT膜上获得了单价阴离子对93号二价阴离子和5.5对葡萄糖的超高选择性渗透率,而原始CNT膜的选择性分别仅为20和1.6。 ZCNT膜在处理NaCl浓度范围从100到600 mol m(-3)的盐水中具有潜在的应用,可广泛用于脱盐,食品和生物分离过程。

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