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Fluorescent Chemosensors for Anions and Contact Ion Pairs with a Cavity-Based Selectivity

机译:用于基于腔的选择性的阴离子和接触离子对的荧光化学传感器

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The association of a concave macrocyclic compound to one or multiple fluorophores is an appealing strategy for the design of chemosensors. Indeed, as with biological systems, a cavity-based selectivity can be expected with such fluorescent receptors. Examples of calix[6]arene-based systems using this strategy are rare in the literature, and to our knowledge, no examples of fluorescent receptors that can bind organic contact ion pairs have been reported. This report describes the straightforward synthesis of fluorescent calix[6]arenebased receptors 4a and 4b bearing three pyrenyl subunits and the study of their binding properties toward anions and ammonium salts using different spectroscopies. It was found that receptor 4a exhibits a remarkable selectivity for the sulfate anion in DMSO, enabling its selective sensing by fluorescence spectroscopy. In CDCl_3, the receptor is able to bind ammonium ions efficiently only in association with the sulfate anion. Interestingly, this cooperative binding of ammonium sulfate salts was also evidenced in a protic environment. Finally, a cavity-based selectivity in terms of size and shape of the guest was observed with both receptors 4a and 4b, opening interesting perspectives on the elaboration of fluorescent cavity-based systems for the selective sensing of biologically relevant ammonium salts such as neurotransmitters.
机译:凹型大环化合物与一个或多个荧光团的缔合是化学传感器设计的一种吸引人的策略。确实,与生物系统一样,可以预期这种荧光受体基于腔的选择性。使用此策略的基于杯[6]芳烃的系统的例子在文献中很少见,据我们所知,尚无可结合有机接触离子对的荧光受体的例子。该报告描述了带有三个pyr烯基亚基的荧光杯[6]芳烃基受体4a和4b的直接合成,以及使用不同的光谱学研究了它们与阴离子和铵盐的结合特性。发现受体4a对DMSO中的硫酸根阴离子表现出显着的选择性,从而能够通过荧光光谱对其进行选择性感测。在CDCl_3中,该受体仅与硫酸根阴离子缔合才能够有效结合铵离子。有趣的是,在质子环境中也证明了硫酸铵盐的这种协同结合。最后,在两个受体4a和4b上都观察到了基于客体大小和形状的基于腔的选择性,从而为阐述基于荧光腔的系统的选择性开创了有趣的观点,该系统用于选择性传感生物相关的铵盐,例如神经递质。

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