ANALYSIS OF THE TRANSIENT EFFECT FOR A BIMOLECULAR FLUORESCENCE-QUENCHING REACTION BETWEEN IONS IN AQUEOUS-SOLUTION .2. TEMPERATURE-DEPENDENCE OF KINETIC-PARAMETERS
Citation
Ad. Scully et al., ANALYSIS OF THE TRANSIENT EFFECT FOR A BIMOLECULAR FLUORESCENCE-QUENCHING REACTION BETWEEN IONS IN AQUEOUS-SOLUTION .2. TEMPERATURE-DEPENDENCE OF KINETIC-PARAMETERS, Journal of physical chemistry, 97(41), 1993, pp. 10524-10529
Categorie Soggetti
Chemistry Physical
SICI code
0022-3654(1993)97:41<10524:AOTTEF>2.0.ZU;2-V
Abstract
The diffusion-influenced electron-transfer reaction between electronic
ally excited 5,10,15,20-tetrakis(4-sulfonatophenyl)porphine (H-2TPPS4-
) and methylviologen (MV2+) in aqueous solution was investigated over
the temperature range 10-35-degrees-C using nanosecond time-resolved
fluorescence decay measurements. The ionic strength of these solutions
was maintained at 0.004 mol/kg by the addition of NaCl as an inert el
ectrolyte in order to account for the increase in screening of reactan
t charges that occurs as the MV2+ concentration increases. The decay o
f fluorescence from H-2TPPS4- is highly nonexponential for all temper
atures and MV2+ concentrations used in this work. These nonexponential
fluorescence decay curves were analyzed according to the model for th
e kinetics of diffusion-influenced ionic reactions that was developed
by Hong and Noolandi. This has enabled values for the optimized electr
on-transfer distance, R, the sum of the diffusion coefficients of the
reactants, D, and the intrinsic reaction rate coefficient, k(act), to
be calculated at each temperature. This reaction was found to obey the
Stokes-Einstein relation. The values for R at each temperature were s
lightly larger than the estimated contact distance, and an activation
energy of 16.2 +/- 1.2 kJ/mol was calculated from an Arrhenius-type tr
eatment of the temperature dependence of k(act).