CHARGE-TRANSFER AND MOLECULAR-DISTRIBUTION OF RU(BPY)(3)(2-SITU SPECTROCYCLIC VOLTAMMETRY() COMPLEX DISPERSED IN A NAFION(R) MEMBRANE AS STUDIED BY IN)
M. Yagi et al., CHARGE-TRANSFER AND MOLECULAR-DISTRIBUTION OF RU(BPY)(3)(2-SITU SPECTROCYCLIC VOLTAMMETRY() COMPLEX DISPERSED IN A NAFION(R) MEMBRANE AS STUDIED BY IN), Journal of electroanalytical chemistry [1992], 383(1-2), 1995, pp. 61-66
Charge transport through a Nafion(R) membrane incorporating dispersed
Ru(bpy)(3)(2+) (bpy = 2,2'-bipyridine) complex has been investigated b
y in-situ spectrocyclic voltammetry (SCV) measurements. The ratio R(CT
) of the electrochemically active complexes was obtained from the visi
ble absorption spectral change; it increased with increasing the compl
ex concentration c in the membrane. The distribution of the intermolec
ular distance was taken into account using a statistical calculation.
The relationship between R(CT) and c was derived on the basis of the c
enter-to-center distance distribution between the nearest-neighbor mol
ecules, and the value of the charge transfer distance R(0) was obtaine
d from this relation using a charge-hopping model. The R(0) value depe
nded on the scan rate of the potential. At high scan rates, at which b
ounded motion of the complex is almost negligible, R(0) = 0.93 nm was
taken as the charge-hopping distance between adjacent redox centers. T
he R(0) value at slow scan rates (e.g. R(0) = 1.5 nm at 2 mV s(-1)) in
cludes charge hopping between adjacent redox centers as well as the bo
unded motion of the complex.