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Supramolecular Chemistry And Self-assembly Special Feature: Metal ion recognition and molecular templating inself-assembled monolayers of cyclic and acyclic polyethers

机译:超分子化学和自组装特征:金属离子识别和分子模板环状和无环聚醚的自组装单层

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摘要

Our recent work with cyclic and acyclic polyether self-assembled monolayers (SAMs) on gold is presented. A series of dithia-crown-tetrathiafulvalene derivatives with one or two disulfide groups has been prepared, and their SAMs on gold have been characterized by electrochemistry and by reflection–absorption infrared spectroscopy. These SAMs are extremely stable on repeated electrochemical potential scans and can selectively recognize alkali metal ions. Acyclic polyether derivatives can also self-assemble on gold to yield selective metal ion recognition domains. Impedance spectroscopy data for these SAMs fit the Langmuir isotherm and allow the determination of ion association constants. Some of the SAMs prepared with new acyclic polyether derivatives are able to detect potassium cations selectively when templated in their presence. These structures are believed to be a consequence of ion “imprinting” during the process of SAM formation.
机译:介绍了我们最近在金上的环状和非环状聚醚自组装单分子膜(SAMs)的工作。制备了一系列带有一个或两个二硫键的二硫杂-冠-四硫富瓦烯衍生物,并通过电化学和反射吸收红外光谱对它们在金上的SAM进行了表征。这些SAM在反复进行电化学电势扫描时非常稳定,并且可以选择性地识别碱金属离子。无环聚醚衍生物也可以在金上自组装以产生选择性的金属离子识别域。这些SAM的阻抗谱数据符合Langmuir等温线,并可以确定离子缔合常数。当使用新的无环聚醚衍生物制备的某些SAM存在模板时,能够选择性地检测钾阳离子。这些结构被认为是在SAM形成过程中离子“压印”的结果。

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