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通过受限几何结构中的主客体络合作用对锂离子的纳米流控二极管识别。

Lithium Ion Recognition with Nanofluidic Diodes through Host-Guest Complexation in Confined Geometries.

机构信息

Technische Universität Darmstadt , Fachbereich Material- und Geowissenschaften, Fachgebiet Materialanalytik , Alarich-Weiss-Strasse 2 , D-64287 Darmstadt , Germany.

GSI Helmholtzzentrum für Schwerionenforschung , Planckstrasse 1 , D-64291 Darmstadt , Germany.

出版信息

Anal Chem. 2018 Jun 5;90(11):6820-6826. doi: 10.1021/acs.analchem.8b00902. Epub 2018 May 15.

Abstract

The lithium ion recognition is receiving significant attention because of its application in pharmaceuticals, lubricants and, especially, in energy technology. We present a nanofluidic device for specific lithium ion recognition via host-guest complexation in a confined environment. A lithium-selective receptor molecule, the aminoethyl-benzo-12-crown-4 (BC12C4-NH), is designed and functionalized on single conical nanopores in polyethylene terephthalate (PET) membranes. The native carboxylic acid groups on the pore walls are covalently linked with the crown ether moieties and the process is monitored from the changes in the current-voltage ( I- V) curves. The B12-crown-4 moieties are known to specifically bind with lithium ions and when the modified pore is exposed to different alkali metal chloride solutions separately, significant changes in the ion current and rectification are only observed for lithium chloride. This fact suggests the generation of positively charged B12C4-Li complexes on the pore surface. Furthermore, the nanofluidic diode is able to recognize the lithium ion even in the presence of high concentrations of potassium ions in the external electrolyte solution. Thus, this nanodevice suggests a strategy to miniaturize nanofluidic porous systems for efficient recognition, extraction, and separation of lithium from raw materials.

摘要

锂离子识别因其在制药、润滑剂,特别是在能源技术中的应用而受到广泛关注。我们提出了一种纳米流道装置,通过在受限环境中的主客体络合作用来实现特定的锂离子识别。设计并在聚对苯二甲酸乙二醇酯(PET)膜上的单个锥形纳米孔中功能化了一种锂选择性受体分子,即氨基乙基-苯并-12-冠-4(BC12C4-NH)。孔壁上的天然羧酸基团与冠醚部分通过共价键连接,并且从电流-电压(I-V)曲线的变化来监测该过程。众所周知,B12-冠-4 部分与锂离子特异性结合,当改性孔分别暴露于不同的碱金属氯化物溶液中时,只有氯化锂才会引起离子电流和整流的显著变化。这一事实表明,在孔表面上产生了带正电荷的 B12C4-Li 配合物。此外,即使在外部电解质溶液中有高浓度的钾离子存在的情况下,纳米流道二极管也能够识别锂离子。因此,这种纳米器件为从原材料中高效识别、提取和分离锂离子提供了一种小型化纳米流道多孔系统的策略。

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