Laser flash photolysis and EPR studies were performed to elucidate the mechanism of photoinduced step polymerization of thiophene by using diphenyliodonium (Ph 2 I + ) and triphenylsulphonium (Ph 3 S + ) ions as photoinitiators. Photoexcitation of these ions generated phenyliodinium (PhI •+ ) and diphenylsulphinium (Ph 2 S •+ ) radical cations, which were readily quenched by thiophene with rate constants of k q = 1.26 × 10 10 and 1.7 × 10 5 M -1 s -1, respectively. The transient absorption spectra of the corresponding thiophene radical cations were not directly detectable because of the spectral overlap with the precursor salts. However, the related electron-transfer reaction was confirmed by quenching of the PhI •+ radical cation with bithiophene to form the radical cation of bithiophene, which absorb strongly at 420 nm. EPR studies also confirmed the proposed electron-transfer mechanism through the direct detection of the radical cation of thiophene.
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Yağcı et al. (2007) studied this question.
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