4.6 Article

Dihydronaphthalene-Fused Boron-Dipyrromethene (BODIPY) Dyes: Insight into the Electronic and Conformational Tuning Modes of BODIPY Fluorophores

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 16, Issue 9, Pages 2887-2903

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.200902527

Keywords

boron; dyes/pigments; fluorescent probes; photophysics; protonation

Funding

  1. National Natural Science Foundation of China [20875043, 20971066]
  2. Program for New Century Excellent Talents in University [NCET-08-0272]
  3. Major State Basic Research Development Program [2006CB806104, 2007CB925103]
  4. European Commission

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A new series of boron-dipyrromethene (BDR BODIPY) dyes with dihydronaphthalene units fused to the P-pyrrole positions (1a-d. 2) has been synthesised and spectroscopically investigated. All the dyes, except pH-responsive 1d in polar solvents, display intense emission between 550-700 nm. Compounds 1a and 1b with a hydrogen atom and a methyl group in the meso position of the BODIPY core show spectroscopic properties that are similar to those of rhodamine 1.01, thus rendering them potent alternatives to the positively charged rhodamine dyes as stains and labels for less polar environments or for the dyeing of latex beads. Compound Id, which carries an electron-donating 4-(dimethylamino)-phenyl group in the meso position, shows dual fluorescence in solvents more polar than dibutyl ether and can act as a pH-responsive light-up probe for acidic pH. Correlation of the pK(a) data of 1d and several other meso(4-dimethylanilino)-substituted BODIPY derivatives allowed us to draw conclusions on the influence of steric crowding at the meso position on the acidity of the aniline nitrogen atom. Preparation and investigation of 2, which carries a nitrogen instead of a carbon as the meso-bridgehead atom, Suggests that the rules of colour tuning of BODIPYs as established so far have to be reassessed; for all the reported couples of meso-C- and meso-N-substituted BODIPYs, the exchange leads to pronounced redshifts of the spectra and reduced fluorescence quantum yields. For 2, when compared with I a, the opposite is found: negligible spectral shifts and enhanced fluorescence. Additional X-ray crystallographic analysis of 1a and quantum chemical modelling of the title and related compounds employing density functional theory granted further insight into the features of such sterically crowded chromophores.

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