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具有可调通道尺寸的亚纳米多孔聚合物膜的离子传输和筛分性能

Ionic Transport and Sieving Properties of Sub-nanoporous Polymer Membranes with Tunable Channel Size.

作者信息

Cheng Yaxiong, Dong Yuhua, Huang Qinggang, Huang Kejing, Lyu Shuangbao, Chen Yonghui, Duan Jinglai, Mo Dan, Sun Youmei, Liu Jie, Peng Yong, Yao Huijun

机构信息

Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, P. R. China.

University of Chinese Academy of Sciences, Beijing 100049, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Feb 24;13(7):9015-9026. doi: 10.1021/acsami.0c22689. Epub 2021 Feb 15.

Abstract

Bioinspired nanoporous membranes show great potential in ionic separation and water filtration by offering high selectivity with less permeation resistance. However, complex processes always limit their applications. Here, we report a convenient approach to introduce ionic selective channels in a micron-thick polycarbonate membrane through swift heavy ion irradiation accompanied by UV sensitization and pulsed-electrical etching. The characteristic dimension of channels was tuned through regulating energy loss of the incident ion and UV sensitization time of the membrane, resulting in the sub-nanoporous membranes with mean channel diameter ranging from <2.4 to 9.7 Å. These membranes showed the voltage-activated ionic transport properties associated with the dehydration effect, and the corresponding - characteristics were related to ionic strength, solution pH, ionic type, and channel diameter. It was found that the transmembrane conduction of multivalent ions was severely suppressed compared to monovalent ions, until the size of the membrane channel was comparable to the hydrated diameter of multivalent ions. Ionic sieving experiments also demonstrated the excellent ionic valence selectivity of the membrane. Even for the membrane with a channel diameter close to 1 nm, the Li/Mg separation ratio was still as high as 40, and an even higher separation ratio was found for Li/La (>3000).

摘要

受生物启发的纳米多孔膜在离子分离和水过滤方面展现出巨大潜力,因其具有高选择性且渗透阻力较小。然而,复杂的制备过程一直限制着它们的应用。在此,我们报道了一种简便方法,通过快速重离子辐照并辅以紫外线敏化和脉冲电蚀刻,在微米厚的聚碳酸酯膜中引入离子选择性通道。通过调节入射离子的能量损失和膜的紫外线敏化时间来调整通道的特征尺寸,从而得到平均通道直径范围从小于2.4到9.7 Å的亚纳米多孔膜。这些膜表现出与脱水效应相关的电压激活离子传输特性,且相应特性与离子强度、溶液pH值、离子类型和通道直径有关。研究发现,与单价离子相比,多价离子的跨膜传导受到严重抑制,直到膜通道尺寸与多价离子的水合直径相当。离子筛分实验也证明了该膜具有出色的离子价态选择性。即使对于通道直径接近1 nm的膜,Li/Mg分离比仍高达40,而Li/La的分离比更高(>3000)。

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