Polyether-Bridged Sexithiophene as a Complexation-Gated Molecular Wire for Intramolecular Photoinduced Electron Transfer

The porphyrin−sexithiophene−fullerene triad 2, where the two central thiophene units of the sexithiophene spacer are bridged with a crown-ether-like polyether chain, undergoes efficient intramolecular electron transfer from the photoexcited porphyrin moiety to the fullerene through the sexithiophene...

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Veröffentlicht in:Journal of the American Chemical Society 2005-11, Vol.127 (44), p.15372-15373
Hauptverfasser: Oike, Takuro, Kurata, Tomoyuki, Takimiya, Kazuo, Otsubo, Tetsuo, Aso, Yoshio, Zhang, Huimin, Araki, Yasuyuki, Ito, Osamu
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Sprache:eng
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Zusammenfassung:The porphyrin−sexithiophene−fullerene triad 2, where the two central thiophene units of the sexithiophene spacer are bridged with a crown-ether-like polyether chain, undergoes efficient intramolecular electron transfer from the photoexcited porphyrin moiety to the fullerene through the sexithiophene. However, complexation with a sodium cation in the crown ether ring causes complete suppression of electron transfer as a result of a drastic conformational change of the sexithiophene backbone. Furthermore, decomplexation resumes the photoinduced electron transfer. This on/off switching phenomenon indicates that the polyether-bridged sexithiophene can function as a complexation-gated molecular wire.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja055648w