D'Souza Francis, Maligaspe Eranda, Karr Paul A, Schumacher Amy Lea, El Ojaimi Maya, Gros Claude P, Barbe Jean-Michel, Ohkubo Kei, Fukuzumi Shunichi
Department of Chemistry, Wichita State University, 1845 Fairmount, Wichita, Kansas 67260-0051, USA.
Chemistry. 2008;14(2):674-81. doi: 10.1002/chem.200700936.
Pacman-type face-to-face zinc-porphyrin-fullerene dyads have been newly synthesized and studied. Owing to the close proximity of the donor and acceptor entities, strong pi-pi intramolecular interactions between the porphyrin and fullerene entities resulted in modulating the spectral and electrochemical properties of the dyads. New absorption and emission bands that correspond to the charge-transfer interactions were observed in the near-IR region. Time-resolved transient absorption studies revealed efficient photoinduced electron transfer from the singlet excited porphyrin to the fullerene entity. The rate constants for photoinduced electron transfer are analyzed in terms of the Marcus theory of electron transfer, which afforded a large electron coupling matrix element (V=140 cm(-1)) for the face-to-face dyads. As a consequence of the large charge-recombination driving force in the Marcus inverted region, a relatively long lifetime of the charge-separated state has been achieved.
新型合成并研究了“吃豆人”型面对面锌卟啉-富勒烯二元体系。由于供体和受体实体距离很近,卟啉与富勒烯实体之间强烈的π-π分子内相互作用导致二元体系的光谱和电化学性质发生改变。在近红外区域观察到了对应电荷转移相互作用的新吸收带和发射带。时间分辨瞬态吸收研究表明,单重激发态卟啉向富勒烯实体发生了有效的光致电子转移。根据电子转移的马库斯理论分析了光致电子转移的速率常数,该理论为面对面二元体系提供了较大的电子耦合矩阵元(V = 140 cm⁻¹)。由于在马库斯反转区域存在较大的电荷复合驱动力,实现了电荷分离态相对较长的寿命。