el-Khouly M E, Araki Y, Fujitsuka M, Watanabe A, Ito O
Institute for Chemical Reaction Science, Tohoku University, Katahira, Aobaku, Sendai 980-8577, Japan.
Photochem Photobiol. 2001 Jul;74(1):22-30. doi: 10.1562/0031-8655(2001)074<0022:petbca>2.0.co;2.
Photoinduced electron-transfer processes in the systems of chlorophylls (Chl) (chlorophyll-a [Chl-a] and chlorophyll-b) and fullerenes (C60/C70) in both polar and non-polar solvents have been investigated with nanosecond laser photolysis technique, observing the transient spectra in the visible/near-IR regions. By the excitation of Chl in benzonitrile (BN) it has been proved that electron transfer takes place from the triplet excited states of Chl to the ground states of C60/C70. By the excitation of C70 in BN electron transfer takes place from the ground states of Chl to the triplet excited state of C70. In both Chl the rate constants and quantum yields for the electron-transfer processes are as high as those of zinc porphyrins and zinc phthalocyanines, indicating that the long alkyl chains of Chl play no role in retarding the electron transfer. The rate constant for the electron-mediating process from the radical anion of C70 to octylviologen dication yielding the octylviologen radical cation was evaluated. The back electron-transfer process from the viologen radical cation to the radical cation of Chl-a takes place in a longer time-scale, indicating that a photosensitized electron-transfer/electron-mediating cycle is achieved.
采用纳秒激光光解技术,研究了叶绿素(Chl)(叶绿素a [Chl-a]和叶绿素b)与富勒烯(C60/C70)在极性和非极性溶剂体系中的光诱导电子转移过程,观测了可见/近红外区域的瞬态光谱。通过在苯甲腈(BN)中激发Chl,已证明电子从Chl的三重激发态转移至C60/C70的基态。通过在BN中激发C70,电子从Chl的基态转移至C70的三重激发态。在两种Chl中,电子转移过程的速率常数和量子产率与锌卟啉和锌酞菁的一样高,这表明Chl的长烷基链在阻碍电子转移方面不起作用。评估了从C70的自由基阴离子到辛基紫精二价阳离子生成辛基紫精自由基阳离子的电子介导过程的速率常数。从紫精自由基阳离子到Chl-a自由基阳离子的反向电子转移过程发生在更长的时间尺度上,这表明实现了一个光敏化电子转移/电子介导循环。