V. Kurshev et L. Kevan, COMPARISON OF PHOTOELECTRON TRANSFER BETWEEN RU(BPY)(3)(2+) AND MV(2+) IN TIO2 AND SNO2 COLLOIDS AND DIHEXADECYL PHOSPHATE VESICLES, Langmuir, 13(2), 1997, pp. 225-228
The photoyields of methylviologen cation radical in frozen TiO2 and Sn
O2 colloids and dihexadecyl phosphate (DHP) anionic vesicles containin
g RU(bpy)(3)(2+) and methylviologen as electron donor and acceptor are
compared. The net yield of charge separation through direct photoelec
tron transfer from the electron donor to the electron acceptor in DHP
vesicles is much lower than that through photoelectron and hole genera
tion inside colloidal semiconductors with their subsequent trapping by
the electron acceptor and the electron donor or that through electron
transfer from the donor to the acceptor mediated by the semiconductor
colloid. In contrast to the electron spin resonance (ESR) detection o
f methylviologen cation radical, RU(bpy)(3)(3+) cation radical was not
detected by ESR in the above systems.