Photochromism and photofluorochromism of arylvinylene phenanthridines
Abstract
Novel phenanthridine-based light-induced, multicolour photochromic π-conjugated compounds (PC1–PC3) have been developed. PC1–PC3 were synthesised via Knoevenagel condensation on phenanthridine using various aromatic aldehydes [triphenylaminyl (TPA) and pyrenyl (PY)] in the presence of benzoic acid and benzoic anhydride in 63–70% yields. The compounds absorb strongly in the visible region (λmax = 360–408 nm for PC1, λmax = 360 nm for PC2, λmax = 385 nm for PC3). Interestingly, the solutions of these compounds undergo photo-transformation (under 254 nm UV light) with a colour change from yellow to purple, orange, and brown, respectively, for PC1–PC3, accompanied by a redshift of 120–140 nm in the absorption maxima. This transformation is rapid (within 60 seconds) and reverts to its original state by heating the solution at 35 °C for 30 minutes. In addition, PC1–PC3 also exhibit variations in fluorescence, with PC1 and PC2 red-shifting by 150 nm (yellow to red emission) and PC3 undergoing complete quenching. We attribute this transformation to a photoexcited partial proton transfer, leading to a metastable hydrogen bonding state, as supported by 1H NMR and DFT calculations.
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