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Primary charge-recombination in an artificial photosynthetic reaction center.


ABSTRACT: Photoinduced primary charge-separation and charge-recombination are characterized by a combination of time-resolved optical and EPR measurements of a fullerene-porphyrin-linked triad that undergoes fast, stepwise charge-separation processes. The electronic coupling for the energy-wasting charge recombination is evaluated from the singlet-triplet electronic energy gap in the short-lived, primary charge-separated state. The electronic coupling is found to be smaller by approximately 40% than that for the primary charge-separation. This inhibition of the electronic interaction for the charge-recombination to excited triplet state largely results from a symmetry-broken electronic structure modulated by configuration interaction between 3(b1u,b3g) and 3(au, b3g) electronic states of the free-base porphyrin.

SUBMITTER: Kobori Y 

PROVIDER: S-EPMC1177418 | biostudies-literature | 2005 Jul

REPOSITORIES: biostudies-literature

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Primary charge-recombination in an artificial photosynthetic reaction center.

Kobori Yasuhiro Y   Yamauchi Seigo S   Akiyama Kimio K   Tero-Kubota Shozo S   Imahori Hiroshi H   Fukuzumi Shunichi S   Norris James R JR  

Proceedings of the National Academy of Sciences of the United States of America 20050712 29


Photoinduced primary charge-separation and charge-recombination are characterized by a combination of time-resolved optical and EPR measurements of a fullerene-porphyrin-linked triad that undergoes fast, stepwise charge-separation processes. The electronic coupling for the energy-wasting charge recombination is evaluated from the singlet-triplet electronic energy gap in the short-lived, primary charge-separated state. The electronic coupling is found to be smaller by approximately 40% than that  ...[more]

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