Department of Physical Chemistry, University of Geneva, Switzerland.
Phys Chem Chem Phys. 2013 Jan 28;15(4):1177-87. doi: 10.1039/c2cp43595k.
The excited-state dynamics of two triads consisting of a naphthalenediimide (cNDI) substituted at the core by two zinc (ZnP) or free-base tetraphenylporphyrins (FbP) was investigated by ultrafast fluorescence and transient absorption spectroscopy. The electronic absorption spectra of the triads are almost the composites of those of the constituents, pointing to a weak electronic coupling and to a localization of the excitation energy on one of the porphyrins. In cyclohexane, the excited-state dynamics of the triads are essentially the same as those of the individual porphyrins, with the exception of the Soret emission of the ZnP triad, whose lifetime exhibits a more than 10 fold shortening compared to ZnP. A similarly ultrafast fluorescence decay was measured in tetrahydrofuran and benzonitrile. In these two solvents, charge separation from the excited porphyrin to the cNDI was found to take place with ∼1 ps and ∼25 ps time constants in the ZnP and FbP triads, respectively. The build up of the charge-separated state population in the ZnP triad is independent of the excitation wavelength, indicating that charge separation takes place from the lowest singlet excited state. Charge recombination occurs with a time constant of around 8 ps in both triads, i.e. it is slower than charge separation in the ZnP triad but faster in the FbP triad. These differences are rationalized in terms of the driving forces for charge separation and recombination.
通过超快荧光和瞬态吸收光谱研究了由两个锌(ZnP)或自由碱基四苯基卟啉(FbP)取代核心的两个三联体的激发态动力学。三联体的电子吸收光谱几乎是组成部分的复合材料,表明电子耦合较弱,激发能量定域在卟啉之一上。在环己烷中,三联体的激发态动力学与卟啉单体基本相同,除了 ZnP 三联体的 Soret 发射,其寿命比 ZnP 缩短了 10 多倍。在四氢呋喃和苯腈中也测量了类似的超快荧光衰减。在这两种溶剂中,发现从激发卟啉到 cNDI 的电荷分离分别在 ZnP 和 FbP 三联体中以约 1 ps 和 25 ps 的时间常数发生。ZnP 三联体中电荷分离态的建立与激发波长无关,表明电荷分离发生在最低单线态激发态。在两个三联体中,电荷复合都发生在约 8 ps 的时间常数,即在 ZnP 三联体中较慢,但在 FbP 三联体中较快。这些差异可以根据电荷分离和重组的驱动力来解释。