Photosynthetic Reaction Center Mimicry: Low Reorganization Energy Driven Charge Stabilization in Self-Assembled Cofacial Zinc Phthalocyanine Dimer-Fullerene Conjugate

被引:170
作者
D'Souza, Francis [1 ]
Maligaspe, Eranda [1 ]
Ohkubo, Kei [2 ]
Zandler, Melvin E. [1 ]
Subbaiyan, Navaneetha K. [1 ]
Fukuzumi, Shunichi [2 ]
机构
[1] Wichita State Univ, Dept Chem, Wichita, KS 67260 USA
[2] Osaka Univ, Grad Sch Engn, Dept Mat & Life Sci, Japan Sci & Technol Agcy,SORT, Suita, Osaka 5650871, Japan
基金
美国国家科学基金会;
关键词
PHOTOINDUCED ELECTRON-TRANSFER; SUPRAMOLECULAR PORPHYRIN-FULLERENE; LANGMUIR-BLODGETT MONOLAYERS; CROWN-ETHER VOIDS; ION PAIR STATES; RHODOPSEUDOMONAS-VIRIDIS; PHOTOPHYSICAL PROPERTIES; NONLINEAR COMPLEXATION; CATION COMPLEXATION; NONPOLAR-SOLVENTS;
D O I
10.1021/ja903467w
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
By employing well-defined self-assembly methods, a biomimetic bacterial photosynthetic reaction center complex has been constructed, and photoinduced electron transfer originating in this supramolecular donor-acceptor conjugate has been investigated. The biomimetic model of the bacterial "special pair" donor, a cofacial zinc phthalocyanine dimer, was formed via potassium ion induced dimerization of 4,5,4',5',4 '', 5 '',4''',5'''-zinc tetrakis(1,4,7,10,13-pentaoxatridecamethylene)phthalocyanine. The dimer was subsequently self-assembled with functionalized fullerenes via "two-point" binding involving axial coordination and crown ether-alkyl ammonium cation complexation to form the donor-acceptor pair, mimicking the noncovalently bound entities of the bacterial photosynthetic reaction center. The adopted self-assembly methodology yielded a supramolecular complex of higher stability with defined geometry and orientation as revealed by the binding constant and computational optimized structure. Unlike the previously reported porphyrin analog, the present phthalocyanine macrocycle based model system exhibited superior electron-transfer properties including formation of a long-lived charge-separated state, a key step of the photosynthetic light energy conversion process. Detailed analysis of the kinetic data in light of the Marcus theory of electron transfer revealed that small reorganization energy of the relatively rigid phthalocyanine is primarily responsible for slower charge-recombination process. The importance of the cofacial dimer in stabilizing the charge-separated state is borne out in the present all-supramolecular "reaction center" donor-acceptor mimic.
引用
收藏
页码:8787 / 8797
页数:11
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