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溶液中苯甲酮衍生物在较高激发单重态(S2)和最低三重态(T1)下的光致ω键解离

Photoinduced omega-bond dissociation in the higher excited singlet (S2) and lowest triplet (T1) states of a benzophenone derivative in solution.

作者信息

Yamaji Minoru, Inomata Susumu, Nakajima Satoru, Akiyama Kimio, Tobita Seiji, Marciniak Bronislaw

机构信息

Department of Chemistry, Gunma University, Kiryu 376-8515, Japan.

出版信息

J Phys Chem A. 2005 May 5;109(17):3843-8. doi: 10.1021/jp0506641.

Abstract

Photochemical properties of photoinduced omega-bond dissociation in p-benzoylbenzyl phenyl sulfide (BBPS) in solution were investigated by time-resolved EPR and laser flash photolysis techniques. BBPS was shown to undergo photoinduced omega-bond cleavage to yield the p-benzoylbenzyl radical (BBR) and phenyl thiyl radical (PTR) at room temperature. The quantum yield (phi(rad)) for the radical formation was found to depend on the excitation wavelength, i.e., on the excitation to the excited singlet states, S2 and S1 of BBPS; phi(rad)(S2) = 0.65 and phi(rad)(S1) = 1.0. Based on the CIDEP data, these radicals were found to be produced via the triplet state independent of excitation wavelength. By using triplet sensitization of xanthone, the efficiency (alpha(rad)) of the C-S bond fission in the lowest triplet state (T1) of BBPS was determined to be unity. The agreement between phi(rad)(S1) and alpha(rad) values indicates that the C-S bond dissociation occurs in the T1 state via the S1 state due to a fast intersystem crossing from the S1 to the T1 state. In contrast, the wavelength dependence of the radical yields was interpreted in terms of the C-S bond cleavage in the S2 state competing with internal conversion from the S2 to the S1 state. The smaller value of phi(rad)(S2) than that of phi(rad)(S1) was proposed to originate from the geminate recombination of singlet radical pairs produced by the bond dissociation via the S2 state. Considering the electronic character of the excited and dissociative states in BBPS showed a schematic energy diagram for the omega-bond dissociation of BBPS.

摘要

采用时间分辨电子顺磁共振和激光闪光光解技术,研究了溶液中对苯甲酰苄基苯基硫醚(BBPS)光诱导ω键解离的光化学性质。结果表明,BBPS在室温下会发生光诱导ω键断裂,生成对苯甲酰苄基自由基(BBR)和苯基硫自由基(PTR)。发现自由基形成的量子产率(φ(rad))取决于激发波长,即取决于对BBPS的激发单重态S2和S1的激发;φ(rad)(S2)=0.65,φ(rad)(S1)=1.0。根据CIDEP数据,发现这些自由基是通过与激发波长无关的三重态产生的。通过使用呫吨酮的三重态敏化,确定了BBPS最低三重态(T1)中C-S键裂变的效率(α(rad))为1。φ(rad)(S1)和α(rad)值之间的一致性表明,由于从S1到T1态的快速系间窜越,C-S键解离在T1态中通过S1态发生。相反,自由基产率的波长依赖性是根据S2态中的C-S键断裂与从S2到S1态的内转换竞争来解释的。有人提出,φ(rad)(S2)的值小于φ(rad)(S1)的值,是由于通过S2态的键解离产生的单重态自由基对的双分子复合。考虑到BBPS中激发态和离解态的电子特性,给出了BBPS的ω键解离的示意能量图。

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