N. Sarkar et al., SOLVATION DYNAMICS OF COUMARIN-480 IN REVERSE MICELLES - SLOW RELAXATION OF WATER-MOLECULES, Journal of physical chemistry, 100(25), 1996, pp. 10523-10527
The picosecond time-resolved Stokes shift of the laser dye coumarin 48
0 (I) is studied in Aerosol OT-heptane reverse micelles at various con
centrations of water. On addition of water to a n-heptane solution of
I containing 0.09 M AOT, the emission spectrum of I exhibits a promine
nt shoulder at 480 nm which is ascribed to the dye molecules in the wa
ter pool of the reverse micelles. In n-heptane, the fluorescence decay
s of I at short and long wavelengths are identical, which rules out an
y time-resolved Stokes shift. On addition of water to the AOT/heptane
system, the decay at long wavelengths exhibit a distinct growth on the
nanosecond time scale. This and the time-dependent Stokes shift indic
ate that the water molecules in the water pool of the AOT reverse mice
lles undergo slow relaxation on the nanosecond time scale.