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首页> 外文期刊>Macromolecules >Mechanism of photoinduced step polymerization of thiophene by onium salts: Reactions of phenyliodinium and diphenylsulfinium radical cations with thiophene
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Mechanism of photoinduced step polymerization of thiophene by onium salts: Reactions of phenyliodinium and diphenylsulfinium radical cations with thiophene

机译:鎓盐光诱导噻吩逐步聚合的机理:苯基碘鎓和二苯基s自由基阳离子与噻吩的反应

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摘要

Laser flash photolysis and EPR studies were performed to elucidate the mechanism of photoinduced step polymerization of thiophene by using diphenyliodonium (Ph2I+) and triphenylsulphonium (Ph3S+) ions as photoinitiators. Photoexcitation of these ions generated phenyliodinium (PhI center dot+) and diphenylsulphinium (Ph2S center dot+) radical cations, which were readily quenched by thiophene with rate constants of k(q) = 1.26 x 10(10) and 1.7 x 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 center dot+ 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.
机译:进行了激光闪光光解和EPR研究,以二苯基碘鎓(Ph2I +)和三苯基s(Ph3S +)离子为光引发剂,阐明了噻吩的光诱导逐步聚合机理。这些离子的光激发产生了苯基碘鎓(PhI中心点+)和二苯基硫鎓(Ph2S中心点+)自由基阳离子,它们很容易被噻吩淬灭,速率常数为k(q)= 1.26 x 10(10)和1.7 x 10(5)M -1 s(-1)。由于与前体盐的光谱重叠,因此不能直接检测到相应的噻吩自由基阳离子的瞬态吸收光谱。然而,通过用联噻吩淬灭PhI中心点+自由基阳离子以形成联噻吩的自由基阳离子,证实了相关的电子转移反应,联噻吩的自由基阳离子在420nm处强烈吸收。 EPR研究还通过直接检测噻吩的自由基阳离子证实了拟议的电子转移机理。

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