| Literature DB >> 24001286 |
Sergey P Gromov1, Svetlana N Dmitrieva, Artem I Vedernikov, Nikolay A Kurchavov, Lyudmila G Kuz'mina, Sergey K Sazonov, Yuri A Strelenko, Michael V Alfimov, Judith A K Howard, Evgeny N Ushakov.
Abstract
Novel 2-benzothiazole-, 4-pyridine-, and 2- and 4-quinoline-based styryl dyes containing an N-methylbenzoaza-15(18)-crown-5(6)-ether moiety were synthesized. A detailed electronic spectroscopy study revealed high performance of these compounds as optical molecular sensors for alkali and alkaline-earth metal cations. They were shown to considerably surpass analogous chromoionophores based on N-phenylaza-crown ethers regarding both the ionochromism and the cation-binding ability. In addition, they act as fluorescent sensors for the metal cations by demonstrating cation-triggered emission. Upon complexation with Ba(2+), the fluorescence enhancement factor reaches 61. The structural features of dyes and their metal complexes were studied by NMR spectroscopy and X-ray diffraction. The high degree of macrocycle preorganization was found to be one of the factors determining the high cation-binding ability of the sensor molecules based on N-methylbenzoaza-crown ethers.Entities:
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Year: 2013 PMID: 24001286 DOI: 10.1021/jo401555a
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354