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由锌卟啉、氧化卟吩原和富勒烯组成的超分子三联体和五联体:设计与电子转移研究

Supramolecular triad and pentad composed of zinc-porphyrin(s), oxoporphyrinogen, and fullerene(s): design and electron-transfer studies.

作者信息

Schumacher Amy Lea, Sandanayaka Atula S D, Hill Jonathan P, Ariga Katsuhiko, Karr Paul A, Araki Yasuyuki, Ito Osamu, D'Souza Francis

机构信息

Department of Chemistry, Wichita State University, 1845 Fairmount, Wichita, KS 67260-0051, USA.

出版信息

Chemistry. 2007;13(16):4628-35. doi: 10.1002/chem.200601854.

Abstract

By adopting a "covalent-coordinate" bonding approach, novel supramolecular pentad and triad molecules composed of zinc-porphyrin(s), fullerene(s), and oxoporphyrinogen redox-/photoactive entities have been constructed, and also characterized by means of spectral and electrochemical techniques. The geometry and electronic structures of the pentad and the triad were deduced by means of DFT calculations. Free-energy calculations suggested that the photoinduced electron/energy transfer from the zinc-porphyrin (ZnP) singlet-excited state to the imidazole modified fullerene (ImC(60)) acceptor and oxoporphyrinogen (OxP) entities is feasible for both the triad and the pentad. The charge-separation rates (k(CS)) determined from picosecond time-resolved emission studies were higher for pentad (C(60)Im:ZnP)(2)-OxP than for the corresponding triad, C(60)Im:ZnP-OxP. A comparison of the k(CS) values previously reported for the covalently linked bis(zinc-porphyrin)-oxoporphyrinogen triad suggests that employing a fullerene acceptor improves the electron-transfer rates. Nanosecond transient absorption studies provide evidence for the occurrence of electron-transfer processes. Lifetimes of the radical ion pairs (tau(RIP)) are in the range of hundreds of nanoseconds, which indicates that there is charge stabilization in the supramolecular systems.

摘要

通过采用“共价-配位”键合方法,构建了由锌卟啉、富勒烯和氧化卟啉原氧化还原/光活性实体组成的新型超分子五元体和三元体分子,并通过光谱和电化学技术对其进行了表征。利用密度泛函理论(DFT)计算推导了五元体和三元体的几何结构和电子结构。自由能计算表明,对于三元体和五元体,从锌卟啉(ZnP)单重激发态到咪唑修饰的富勒烯(ImC(60))受体和氧化卟啉原(OxP)实体的光诱导电子/能量转移是可行的。从皮秒时间分辨发射研究确定的电荷分离速率(k(CS)),五元体(C(60)Im:ZnP)(2)-OxP比相应的三元体C(60)Im:ZnP-OxP更高。先前报道的共价连接的双(锌卟啉)-氧化卟啉原三元体的k(CS)值比较表明,采用富勒烯受体可提高电子转移速率。纳秒瞬态吸收研究为电子转移过程的发生提供了证据。自由基离子对的寿命(tau(RIP))在数百纳秒范围内,这表明超分子体系中存在电荷稳定化。

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