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A highly efficient sensor molecule emitting in the near infrared (NIR): 3,5-distyryl-8-(p-dimethylaminophenyl)difluoroboradiaza-s-indacene

New Journal of Chemistry · 2001 · Vol. 25(2) · pp. 289–292
Knut RurackMatthias KollmannsbergerJörg Daub

Abstract

The spectroscopic properties and the photophysical behaviour of difluoroboradiaza-s-indacene 1, especially designed for the near infrared (NIR) spectral region and equipped with a p-dimethylaminophenyl group at the meso-position, were studied by steady-state and time-resolved optical spectroscopy. Solvent-dependent measurements revealed that for 1, excited state deactivation is governed by population of a non-emissive charge transfer excited state (1CT) as the solvent polarity increases, whereas reference compound 2 shows strong fluorescence from a locally excited state (1LE) in all the solvents employed. Accordingly, protonation of 1 completely suppresses the quenching excited state charge transfer process and leads to strong enhancement of fluorescence in the NIR, distinguishing 1 as a very sensitive fluorescent sensor molecule for pH or solvent acidity in this favourable wavelength region.

Luminescence and Fluorescent MaterialsMolecular Sensors and Ion DetectionConducting polymers and applicationsChemistryExcited stateFluorescencePhotochemistrySolventMoleculeProtonationQuenching (fluorescence)PopulationNear-infrared spectroscopy

Funding

  • Deutsche Forschungsgemeinschaft
Citations
207
FWCI
2.10
field-weighted impact
References
14
Percentile
87%
vs. same field & year
Citations per year
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References
Reference materials for fluorescence measurement
Pure and Applied Chemistry · 1988 · 1,229 citations
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A highly efficient sensor molecule emitting in the near infrared (NIR): 3,5-distyryl-8-(p-dimethylaminophenyl)difluoroboradiaza-s-indacene · Scinovex