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This work investigates the electron-donating capabilities of two 10-π electron nitrogen bridgehead bicyclic 5,6-fused ring systems, imidazo1,2-apyridine and imidazo1,5-apyridine rings. Eight compounds with varying positions of electron-withdrawing moieties (TCF or DCI) coupled to the imidazopyridine ring were synthesized and studied. DCI-containing compounds (Ib–IVb) exhibited a purely dipolar nature with broad absorption bands, weak fluorescence, large Stokes shifts, and strong solvatochromism. In contrast, TCF-containing compounds (Ia–IVa) demonstrated diverse properties. Imidazo1,2-apyridine derivatives Ia and IIa were purely dipolar, while imidazo1,5-apyridine derivatives IIIa and IVa displayed a cyanine-like character with intense absorption and higher quantum yields of emission. The observed gradual red shift in optical properties with changing electron-donor groups (IIb < Ib < IIIb < IVb) and (IIa < Ia < IIIa < IVa) underscores the stronger electron-donor character of imidazo1,5-apyridine compared to that of imidazo1,2-apyridine. Furthermore, crystalline powders of imidazo1,2-apyridine derivatives exhibited fluorescence despite minimal emission in solution. Two compounds (Ib and IVa) were successfully formulated into nanoparticles for potential in vivo imaging applications in zebrafish embryos.
Valla et al. (Mon,) studied this question.
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