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Development of Amylose- and β-Cyclodextrin-Based Chiral Fluorescent Sensors Bearing Terthienyl Pendants

机译:基于直链淀粉和β-环糊精的带有噻吩基链坠的手性荧光传感器的开发

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摘要

Phenylcarbamate derivatives of amylose and β-cyclodextrin show excellent chiral recognition when used as chiral stationary phases (CSPs) for high-performance liquid chromatography. To open up new possibilities of carbohydrate-based materials, we developed chiral fluorescent sensors based on amylose and β-cyclodextrin (Am->1b and CyD->1b, respectively) by attaching fluorescent π-conjugated units on their side chains. Their recognition abilities toward chiral analytes containing a nitrophenyl unit were evaluated by measuring the enantioselective fluorescence quenching behavior. Both sensors showed the same degree of enantioselective fluorescence response for various aromatic nitro compounds. However, in some cases, their enantioselectivities were different depending on the analytes. The difference in the chiral recognition abilities between Am->1b and CyD->1b seems to be based on the structural difference of their inherent backbones, that is, the one-handed helical structure and cyclic structure, respectively. The study on the resolution ability of the Am->1b-based CSP revealed that the terthienyl-based pendant of Am->1b provides not only a fluorescent functionality but also a different chiral recognition site from that of amylose tris(phenylcarbamate).
机译:当用作高效液相色谱的手性固定相(CSP)时,直链淀粉和β-环糊精的苯基氨基甲酸酯衍生物表现出出色的手性识别能力。为了开辟基于碳水化合物的材料的新可能性,我们开发了基于直链淀粉和β-环糊精(分别为Am- > 1b 和CyD- > 1b )的手性荧光传感器在其侧链上有荧光π共轭单元。通过测量对映选择性荧光猝灭行为,评估了它们对含有硝基苯基单元的手性分析物的识别能力。两种传感器对各种芳族硝基化合物均表现出相同程度的对映选择性荧光响应。但是,在某些情况下,它们的对映选择性取决于分析物。 Am- > 1b 和CyD- > 1b 之间的手性识别能力的差异似乎是基于它们固有骨架的结构差异,即单螺旋结构结构和循环结构。对基于Am- > 1b 的CSP拆分能力的研究表明,Am- > 1b 的基于噻吩基的侧基不仅提供荧光功能,而且还提供了不同的手性直链淀粉三(苯基氨基甲酸酯)的识别位点。

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