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用光活性折叠体翻转氯离子浓度的开关。

Flipping the switch on chloride concentrations with a light-active foldamer.

机构信息

Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, USA.

出版信息

J Am Chem Soc. 2010 Sep 22;132(37):12838-40. doi: 10.1021/ja105793c.

Abstract

Here we demonstrate a bioinspired system where light stimulus is used to trigger the wavelength-dependent release and then reuptake of chloride ions in nonaqueous solutions. A chiral aryl-triazole foldamer with two azobenzene end groups has been synthesized to define a folded binding pocket for chloride ions that unfolds with UV light to liberate the chloride. The trans-dominated helical foldamer becomes less stable upon photoisomerization to the cis forms. Simultaneously, the observed binding affinity shows an ∼10-fold reduction from K = 3000 M(-1) (MeCN, 298 K). Control of chloride levels using light is demonstrated by switching the conductivity of an electrolyte solution up and down.

摘要

在这里,我们展示了一个受生物启发的系统,其中光刺激被用来触发非水溶剂中氯离子的波长依赖性释放和再摄取。已经合成了一种具有两个偶氮苯端基的手性芳基三唑折叠体,以定义一个折叠的氯离子结合口袋,该口袋在紫外光下展开以释放氯离子。顺式主导的螺旋折叠体在光异构化为顺式形式时变得不太稳定。同时,观察到的结合亲和力从 K = 3000 M(-1)(MeCN,298 K)降低了约 10 倍。通过上下切换电解质溶液的电导率来证明对氯离子水平的光控制。

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