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Photochemical reaction dynamics of 2,2'-dithiobis(benzothiazole):direct observation of the addition product of an aromatic thiyl radical to an alkene with time-resolved vibrational and electronic absorption spectroscopy

机译:2,2'-二硫代双(苯并噻唑)的光化学反应动力学:使用时间分辨振动和电子吸收光谱直接观察芳族硫基自由基加成到烯烃中的产物

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摘要

The photochemical reaction dynamics of the benzothiazole-2-thiyl (BS) radical, produced by 330 nm ultraviolet photolysis of 2,2′-dithiobis(benzothiazole) (BSSB), are examined on the picosecond time scale. The initial addition product of a thiol–ene reaction between the BS radical and styrene is directly observed by transient vibrational absorption spectroscopy (TVAS). Transient electronic absorption spectroscopy (TEAS) in the ultraviolet and visible spectral regions reveals rapid formation of the ground state BS radical with a time constant of ∼200 fs. The photolytically generated BS radical decays through geminate recombination to the parent molecule BSSB and competitive formation of a BS radical dimer with a rate coefficient of (3.7 ± 0.2) × 10 M s in methanol, and thereafter (36 ± 1)% of the initially formed BS radicals survive at the longest time delay (1.3 ns). In styrene solution, in contrast to methanol and toluene solutions, kinetic traces of the BS radical show an additional decay with a time constant of 305 ± 13 ps, and a broad band at 345–500 nm grows with the same time constant, suggesting a bimolecular reaction of the BS radical with styrene. The TVAS measurements reveal an absorption band of the ground state BS radical at 1301 cm in toluene solution, and the band decays with a time constant of 294 ± 32 ps in styrene solution. Two product bands grow at 1239 cm and 1429 cm with respective time constants of 312 ± 68 ps and 325 ± 33 ps, and are attributed to the addition product BS–St radical formed from the BS radical and styrene. A bimolecular reaction rate coefficient of = (3.8 ± 0.2) × 10 M s is deduced and 22 ± 1% of the initially formed BS radicals are converted to the BS–St radical in neat styrene solution.
机译:在皮秒级的时间范围内研究了2,2'-二硫代双(苯并噻唑)(BSSB)的330 nm紫外线光解所产生的苯并噻唑-2-噻唑(BS)自由基的光化学反应动力学。 BS自由基和苯乙烯之间硫醇-烯反应的初始加成产物可以通过瞬态振动吸收光谱法(TVAS)直接观察到。紫外和可见光谱区域的瞬态电子吸收光谱法(TEAS)揭示了基态BS自由基快速形成的时间常数约为200 fs。光解产生的BS自由基通过与母体分子SBSB的双联重组和竞争性形成BS自由基二聚体而分解,其速率系数为(3.7±0.2)×10 M s在甲醇中,此后为初始的(36±1)%形成的BS自由基在最长的时间延迟(1.3 ns)中存活。与甲醇和甲苯溶液相比,在苯乙烯溶液中,BS自由基的动力学轨迹显示出额外的衰减,时间常数为305±13 ps,并且在345-500 nm处的宽带以相同的时间常数生长,表明BS自由基与苯乙烯的双分子反应。 TVAS测量结果显示,在甲苯溶液中,基态BS自由基在1301 cm处有一个吸收带,在苯乙烯溶液中,该带以294±32 ps的时间常数衰减。两个产物带分别在1239 cm和1429 cm处生长,其时间常数分别为312±68 ps和325±33 ps,这归因于由BS自由基和苯乙烯形成的加成产物BS–St自由基。推导出双分子反应速率系数=(3.8±0.2)×10 M s,并且在纯苯乙烯溶液中,最初形成的BS自由基中有22±1%转化为BS–St自由基。

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