树枝状大分子
聚酰胺
电渗析
离子
埃
纳米技术
膜
化学工程
离子运输机
材料科学
化学
高分子化学
有机化学
结晶学
工程类
生物化学
作者
Baolong Wu,Ning Gan,Yuqing Lin,Yiren Zhang,Jiayu Zhang,Yulong Qiu,Xingzhong Cao,Jianguo Yu,Hideto Matsuyama
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-07-01
卷期号:24 (28): 8650-8657
被引量:16
标识
DOI:10.1021/acs.nanolett.4c01997
摘要
The ion permeability and selectivity of membranes are crucial in nanofluidic behavior, impacting industries ranging from traditional to advanced manufacturing. Herein, we demonstrate the engineering of ion-conductive membranes featuring angstrom-scale ion-transport channels by introducing ionic polyamidoamine (PAMAM) dendrimers for ion separation. The exterior quaternary ammonium-rich structure contributes to significant electrostatic charge exclusion due to enhanced local charge density; the interior protoplasmic channels of PAMAM dendrimer are assembled to provide additional degrees of free volume. This facilitates the monovalent ion transfer while maintaining continuity and efficient ion screening. The dendrimer-assembled hybrid membrane achieves high monovalent ion permeance of 2.81 mol m –2 h –1 (K + ), reaching excellent mono/multivalent selectivity up to 20.1 (K + /Mg 2+ ) and surpassing the permselectivities of state-of-the-art membranes. Both experimental results and simulating calculations suggest that the impressive ion selectivity arises from the significant disparity in transport energy barrier between mono/multivalent ions, induced by the “exterior–interior” synergistic effects of bifunctional membrane channels.
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