Two highly selective OFF–ON green emitting fluorescent thiolprobes (1 and 2) with intense absorption in the visible spectrum (molar extinction coefficient ε is up to 73800 M−1 cm−1 at 509 nm) based on dyads of BODIPY (as electron donor of the photo-induced electron transfer, i.e.PET) and 2,4-dinitrobenzenesulfonyl (DNBS) (as electron acceptor of the PET process) were devised. The single crystal structures of the two probes were determined. The distance between the electron donor (BODIPY fluorophore) and the electron acceptor (DNBS) of probe2 is larger than that of probe1, as a result the contrast ratio (or the PET efficiency) of probe2 is smaller than that of probe1. However, fluorescence OFF–ON switching effects were observed for both probe1 and probe2 in the presence of cysteine (the emission enhancement is 300-fold for probe1 and 54-fold for probe2). The fluorescence OFF–ON sensing mechanism is rationalized by DFT/TDDFT calculations. We demonstrated with DFT calculations that DNBS is ca. 0.76 eV more potent to accept electrons than the maleimide moiety. The probes were used for fluorescent imaging of cellular thiols.
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