Department of Chemistry, University of Kalyani, Kalyani, Nadia-741235, India.
Beilstein J Org Chem. 2008;4:52. doi: 10.3762/bjoc.4.52. Epub 2008 Dec 17.
Quinoline and naphthalene-based fluororeceptors 1 and 2 have been designed and synthesized for detection of hydroxy carboxylic acids in less polar solvents. The receptor 1 shows monomer emission quenching followed by excimer emission upon hydrogen bond-mediated complexation of carboxylic acids. The excimer emission distinguishes aromatic dicarboxylic acids from aliphatic dicarboxylic acids and even long chain aliphatic dicarboxylic acids from short chain aliphatic dicarboxylic acids. The receptor 1 is found to be selective for citric acid with a strong excimer emission in CHCl(3). On the contrary, the receptor 2 exhibited less binding constant value and did not form any excimer upon complexation with the same acids under similar conditions. This established the role of quinoline ring nitrogen in binding with the acids.
基于喹啉和萘的荧光体 1 和 2 已被设计和合成,用于在非极性溶剂中检测羟基羧酸。受体 1 在氢键介导的羧酸络合后显示单体发射猝灭,然后是激基缔合物发射。激基缔合物发射可将芳香族二羧酸与脂肪族二羧酸区分开来,甚至可将长链脂肪族二羧酸与短链脂肪族二羧酸区分开来。发现受体 1 对柠檬酸具有选择性,在 CHCl(3) 中具有强烈的激基缔合物发射。相反,受体 2 在相同条件下与相同酸络合时表现出较小的结合常数值,并且不形成任何激基缔合物。这确立了喹啉环氮在与酸结合中的作用。