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镁卟啉 - 富勒烯二元体系的光谱、电化学及光物理研究

Spectral, electrochemical, and photophysical studies of a magnesium porphyrin-fullerene dyad.

作者信息

El-Khouly Mohamed E, Araki Yasuyuki, Ito Osamu, Gadde Suresh, McCarty Amy L, Karr Paul A, Zandler Melvin E, D'Souza Francis

机构信息

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Katahira, Sendai 980-8577, Japan.

出版信息

Phys Chem Chem Phys. 2005 Sep 7;7(17):3163-71. doi: 10.1039/b507673k. Epub 2005 Jul 29.

Abstract

A covalently linked magnesium porphyrin-fullerene (MgPo-C60) dyad was synthesized and its spectral, electrochemical, molecular orbital, and photophysical properties were investigated and the results were compared to the earlier reported zinc porphyrin-fullerene (ZnPo-C60) dyad. The ab initio B3LYP/3-21G() computed geometry and electronic structure of the dyad predicted that the HOMO and LUMO are mainly localized on the MgP and C60 units, respectively. In o-dichlorobenzene containing 0.1 M (n-Bu)4NClO4, the synthesized dyad exhibited six one-electron reversible redox reactions within the potential window of the solvent. The oxidation and reduction potentials of the MgP and C60 units indicate stabilization of the charge-separated state. The emission, monitored by both steady-state and time-resolved techniques, revealed efficient quenching of the singlet excited state of the MgP and C60 units. The quenching pathway of the singlet excited MgP moiety involved energy transfer to the appended C60 moiety, generating the singlet excited C60 moiety, from which subsequent charge-separation occurred. The charge recombination rates, k(CR), evaluated from nanosecond transient absorption studies, were found to be 2-3 orders of magnitude smaller than the charge separation rate, k(CS). In o-dichlorobenzene, the lifetime of the radical ion-pair, MgPo+-C60*-, was found to be 520 ns which is longer than that of ZnPo*+-C60*- indicating better charge stabilization in MgPo-C60. Additional prolongation of the lifetime of MgPo*+-C60*- was achieved by coordinating nitrogenous axial ligands. The solvent effect in controlling the rates of forward and reverse electron transfer is also investigated.

摘要

合成了一种共价连接的镁卟啉 - 富勒烯(MgPo - C60)二元体系,并对其光谱、电化学、分子轨道和光物理性质进行了研究,且将结果与早期报道的锌卟啉 - 富勒烯(ZnPo - C60)二元体系进行了比较。从头算B3LYP/3 - 21G()计算得到的该二元体系的几何结构和电子结构预测,最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)分别主要定域在MgP和C60单元上。在含有0.1 M(正丁基)4NClO4的邻二氯苯中,合成的二元体系在溶剂的电位窗口内表现出六个单电子可逆氧化还原反应。MgP和C60单元的氧化和还原电位表明电荷分离态得到了稳定。通过稳态和时间分辨技术监测的发射显示,MgP和C60单元的单重激发态发生了有效猝灭。单重激发的MgP部分的猝灭途径涉及能量转移到连接的C60部分,产生单重激发的C60部分,随后发生电荷分离。通过纳秒瞬态吸收研究评估的电荷复合速率k(CR)比电荷分离速率k(CS)小2 - 3个数量级。在邻二氯苯中,发现自由基离子对MgPo+-C60*-的寿命为520 ns,比ZnPo*+-C60*-的寿命长,这表明MgPo - C60中电荷稳定性更好。通过配位含氮轴向配体实现了MgPo*+-C60*-寿命的进一步延长。还研究了溶剂对正向和反向电子转移速率的影响。

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