渗透
磺酸盐
膜
材料科学
锂(药物)
离子
选择性
化学工程
化学
层状结构
无机化学
钠
苯乙烯
聚合物
分析化学(期刊)
结晶学
色谱法
有机化学
共聚物
催化作用
内分泌学
工程类
医学
生物化学
作者
Lu Zong,Ying Wu,Li Ding,Yanying Wei,Haihui Wang
标识
DOI:10.1002/ange.202108801
摘要
Abstract A two‐dimensional (2D) laminar membrane with Li + selective transport channels is obtained by stacking MXene nanosheets with the introduction of poly(sodium 4‐styrene sulfonate) (PSS) with active sulfonate sites, which exhibits excellent Li + selectivity from ionic mixture solutions of Na + , K + , and Mg 2+ . The Li + permeation rate through the MXene@PSS composite membrane is as high as 0.08 mol m −2 h −1 , while the Li + /Mg 2+ , Li + /Na + , and Li + /K + selectivities are 28, 15.5, and 12.7, respectively. Combining the simulation and experimental results, we further confirm that the highly selective rapid transport of partially dehydrated Li + within subnanochannels can be attributed to the precisely controlled interlayer spacing and the relatively weaker ion‐terminal (−SO 3 − ) interaction. This study deepens the understanding of ion‐selective permeation in confined channels and provides a general membrane design concept.
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