A summary of our recent works on fulleropyrrolidines and fullerotriazolines
covalently attached to the strong electron-donor tetrathiafulvalene (TTF)
is presented. Absorption of light in C-60-based TTF-containing dyads leads
to the formation of the fullerene excited singlet state, which undergoes an
intramolecular electron transfer to give the charge-separated (CS) state.
A further stabilization of the CS state takes place by gaining aromaticity
upon oxidation of the donor (TTF) fragment. Back electron transfer proceeds
mainly via formation of the fullerene triplet excited state due to the str
ong second-order vibronic spin-orbit coupling induced by the sulfur nucleus
. Two C-60-acceptor systems have been also studied in the search for a poss
ible electron transfer from the photoexcited fullerene to the covalently li
nked electron-acceptor. Formation of the fullerene triplet excited state ra
ther than an intramolecular electron-transfer was observed in both cases. (
C) 2000 Elsevier Science Ltd. All rights reserved.