The photophysical processes of 4-formacyl-triphenylamine (FTA) and 4,4’-bisformacyl-triphenyl-amine (BTA) have been studied. The fluorescences of FTA and BTA with donor (triamine) and acceptor (formacyl) moieties sho...The photophysical processes of 4-formacyl-triphenylamine (FTA) and 4,4’-bisformacyl-triphenyl-amine (BTA) have been studied. The fluorescences of FTA and BTA with donor (triamine) and acceptor (formacyl) moieties show the twisted intramolecular charge transfer (TICT) emission in polar solvents and photoinduced charge transfer (ICT) emission in nonpolar solvents. These could be supported by the solvent effect, temperature effect and the quenching process by strong electron-deficient compounds.展开更多
基金Project supported by the National Natural Science Foundation of China
文摘The photophysical processes of 4-formacyl-triphenylamine (FTA) and 4,4’-bisformacyl-triphenyl-amine (BTA) have been studied. The fluorescences of FTA and BTA with donor (triamine) and acceptor (formacyl) moieties show the twisted intramolecular charge transfer (TICT) emission in polar solvents and photoinduced charge transfer (ICT) emission in nonpolar solvents. These could be supported by the solvent effect, temperature effect and the quenching process by strong electron-deficient compounds.
基金Project supported by the Ministry of Science and Technology of China (No. G2000078104 G2000077502) and the National Natural Science Foun-dation of China.
文摘The first intramolecular charge transfer transition based on 2-ureido- 4[1H]-pyrimidinone binding module was reported.