A highly sensitive "ON-OFF-ON" dual optical sensor for the detection of Cu(II) ion and triazole pesticides based on novel BODIPY-substituted cavitand.
İpek ÖmeroĞluSüreyya Oğuz TümaySaad MakhseedAli HusainMahmut DurmusPublished in: Dalton transactions (Cambridge, England : 2003) (2021)
The synthesis with full structural characterization including elemental analysis and 1H, 13C, 11B and 19F NMR, FT-IR and MALDI-TOF spectral data, along with the florescence sensing behavior of a new resorcin[4]arene cavitand 3 bearing multiple BODIPY sites achieved by the Cu-catalyzed azide-alkyne cycloaddition (CuAAC) is being reported. The spatial orientation of multiple BODIPY-1,2,3-triazole arms based on the macrocyclic rigid core is of great interest since the resulting structure has been utilized as a fluorescent chemosensor for numerous metal cations. In particular, a remarkable decrease in the fluorescence emission towards Cu(ii) ions, i.e., "turn-off" response, has been obtained giving rise to an optical sensor for the detection of triazole fungicides, namely tebuconazole, triadimenol, triadimefon, i.e. "turn-on" response. Such a molecular system, hence, can be feasibly applied as a dual optical sensor, i.e. "a turn-on-off-on" system, for dangerous contaminants such as heavy metals and pesticides.
Keyphrases
- living cells
- fluorescent probe
- high resolution
- single molecule
- aqueous solution
- mass spectrometry
- risk assessment
- heavy metals
- high speed
- loop mediated isothermal amplification
- gas chromatography
- label free
- quantum dots
- metal organic framework
- real time pcr
- solid state
- drinking water
- molecular docking
- magnetic resonance
- electronic health record
- water soluble
- ionic liquid
- magnetic resonance imaging
- big data
- machine learning
- health risk
- computed tomography
- energy transfer