| Literature DB >> 27879785 |
Francisco M Muñiz1, Luis Simón1, Silvia Sáez1, César Raposo2, Victoria Alcázar3, Joaquín R Morán4.
Abstract
A new fluorescent sensor based on a dimethylxanthene skeleton has beensynthesized. Because of its oxyanion hole structure, this receptor includes a suitablecavity for the association of carboxylic acids. The receptor's fluorescence is quenchedupon addition of dinitrobenzoic acid.Entities:
Keywords: Dimethylxanthene; carboxylic acid receptor; fluorescent sensor; molecular recognition; oxyanion hole.
Year: 2008 PMID: 27879785 PMCID: PMC3663016 DOI: 10.3390/s8031637
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.Oxyanion hole of the enoyl-CoA hydratase with a superimposed 4,5-diacetamidoxanthene, showing the similarity of the H-bonds (level of theory: HF/6-31G).
Figure 2.Conformation of the dansyl group for daxacyan, where the interaction between H-3 and the dansyl group can be observed.
Figure 4.Weak complex between daxacyan and glutarimide and its non-bonding electron repulsion.
Figure 3.Synthesis of daxacyan.
Proposed dimeric structure for daxacyan.
Figure 5.Proposed geometry for the associate between daxacyan and decanoic acid and the chemical shifts of its protons.
Figure 6.Changes in the fluorescence of the daxacyan receptor.
Figure 7.Proposed structure for the complex between daxacyan and the phthaloylalanine.