4.5 Article

Synthesis, Photophysics and Redox Properties of Aza-BODIPY Dyes with Electron-Donating Groups

Journal

CHEMPHYSCHEM
Volume 20, Issue 19, Pages 2482-2497

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cphc.201900689

Keywords

aza-BODIPY; charge transfer; electron donors; excited states; triplet states

Funding

  1. NCN [2016/23/N/ST5/01284, DEC-2011/03/D/ST5/05910]
  2. European Regional Development Fund [POIG.02.01.00-12-023/08]

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A series of novel aza-BODIPY dyes substituted with p-(dimethylamino)phenyl groups were synthesized and their spectral and electrochemical properties were compared. In particular, the impact of p-(Me2N)Ph- groups on these characteristics was of consideration. For two aza-BODIPYs studied, a near-IR absorption band was observed at circa lambda(abs)=796 nm. Due to the pronounced intramolecular charge transfer (ICT) exerted by the presence of strongly electron-donating p-(Me2N)Ph- substituents, the compounds studied were weakly emissive with the singlet lifetimes (tau(S)) in the picosecond range. Nanosecond laser photolysis experiments of the brominated aza-BODIPYs revealed T-1 -> T-n absorption spanning from ca. 350 nm to ca. 550 nm with the triplet lifetimes (tau(T)) ranged between 6.0 mu s and 8.5 mu s. The optical properties of the aza-BODIPYs studied were pH-sensitive. Upon protonation of the dimethylamino groups with trifluoroacetic acid in toluene, a stepwise disappearance of the NIR absorption band at lambda(abs)=790 nm was observed with the concomitant appearance of a blue-shifted absorption band at lambda(abs)=652 nm, which was accompanied by a prominent emission band at lambda(fl)=680 nm. The transformation from a non-emissive to an emissive compound is associated with the inhibition of the ICT. As estimated by CV/DPV measurements, all aza-BODIPYs studied exhibited two irreversible oxidation and two quasi-reversible reduction processes. All compounds studied exhibit extremely high photostability and thermal stability.

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