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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ultrafast Photodynamics of Exciplex Formation and Photoinduced Electron Transfer in Porphyrin-Fullerene Dyads Linked at Close Proximity
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Ultrafast Photodynamics of Exciplex Formation and Photoinduced Electron Transfer in Porphyrin-Fullerene Dyads Linked at Close Proximity

机译:卟啉-富勒烯二联体中紧密缔合的激基形成和光诱导电子转移的超快光动力学

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摘要

The ultrafast photodynamics of prophyrin-fullerene dayds in which the distance between the porphyrin and C_(60) moieties is varied systematically at close proximity has been examined using fluorescence up-conversion and pump-*probe transient absorption techniques with time resolutions of ca. 100 fs. The porphyrin-fullerene dyads examine are MP-D-C_(60) (M = Zn and 2H) in which the C_(60) moiety is directly connected with the porphyrin ring at the meso position and MP-O-C_(60), MP-M-C_(60) in which the C_(60) moiety is linked with porphyrin moieties through the benzene ring at the ortho, meta, and para positions, respectively. The charge transfer (CT) bands are observed for MP-D-C_(60) and MP-O-C_(60), whereas no CT band is seen for MP-D-C_(60) and MP-O-C_(60). Time-resolved absorption spectral measurements indicate that the photoexcitation of ZnP-D-C_(60) in benzonitrile (PhCN) results in formation of the exciplex, which decays to the ground state without forming the harge-separated state. The strong interaction between the ZnP and the C_(60) moieties due to the short linkage distance in ZnP-D-C_(60) as indicated by the observation of the strongest CT band at the ground state results in formation of the exciplex. The energy of the exciplex is lower than that of the charge-separatedstate even in a polar solvent such as PhCN. In contrast, the photodynamics of exciplex formation of linkage, ZnP-O-C_(60), in PhCN results in formation of the charge-separated state via the exciplex formation, which is higher in energy than the charge-separated state. The photodynamics of exciplex formation of porphyrin-C_(60)-linked dyads with a short linkage is characterized by the extremely feat formation rate from the singlet excited states of porphyrins involving both the second and first excited states due to the interaction between the porphyrin and C_(60) moieties, which are placed at close proximity. In the case of MP-D-C_(60), the exciplex formation from the first singlet excited state of MP occurs at an ultrafast time scale with a time constant of 160 fs and that from the second singlet excited state occurs faster with a time constant less than 50 fs.
机译:使用荧光上转换和pump- *探针瞬态吸收技术研究了卟啉-富勒烯days的超快光动力学,其中卟啉和C_(60)部分之间的距离在附近非常系统地变化。 100英尺所研究的卟啉-富勒烯二联体是MP-D-C_(60)(M = Zn和2H),其中C_(60)部分与内消旋位置的卟啉环和MP-O-C_(60)直接连接MP-M-C_(60),其中C_(60)部分通过邻,间和对位的苯环分别与卟啉部分连接。对于MP-D-C_(60)和MP-O-C_(60)观察到电荷转移(CT)带,而对于MP-D-C_(60)和MP-O-C_(没有观察到CT带。 60)。时间分辨吸收光谱测量表明,在苄腈(PhCN)中ZnP-D-C_(60)的光激发导致形成激基复合物,该激基复合物衰减至基态而未形成哈格分离态。 ZnP和C_(60)部分之间的强相互作用是由于ZnP-D-C_(60)中较短的键距所致,正如在基态观察到最强的CT谱带所表明的那样,形成了激基复合物。即使在诸如PhCN的极性溶剂中,激基复合物的能量也低于电荷分离态的能量。相比之下,PhCN中的ZnP-O-C_(60)键的激基复合物形成的光动力学导致通过激基复合物形成形成电荷分离态,其能量高于电荷分离态。带有短连接的卟啉-C_(60)-连接的二元复合物形成的光动力学特征是由于卟啉和二价铁之间的相互作用,卟啉的单重激发态同时涉及第二和第一激发态而形成极高的壮举速率。 C_(60)部分,它们紧密相邻。在MP-D-C_(60)的情况下,由MP的第一单重态激发态形成的激基复合物以160 fs的时间常数以超快的时间尺度发生,并且随着时间的变化,由第二单重态激发态形成的激基复合物发生得更快。恒定小于50 fs。

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