Dc. Luhrs et al., Excited-state proton transfer in 1-naphthol(NH3)(n) clusters: Wavelength-dependence of the picosecond pump-probe spectra, PHYS CHEM P, 2(19), 2000, pp. 4335-4340
The threshold size and timescale for excited-state proton transfer in 1-nap
hthol/ammonia clusters, 1-NpOH(NH3)(n), were investigated by picosecond tim
e-resolved pump-probe photoionisation, using different wavelengths for both
the pump and probe laser. For the cluster with four ammonia molecules surr
ounding the naphthol moiety, 1-NpOH(NH3)(4), a transient with a time consta
nt of around 60 ps is observed. This transient can be assigned to the motio
n of the system along a complicated reaction coordinate that includes proto
n transfer in the excited state as well as intramolecular vibrational-energ
y redistribution and solvent reorganisation. At sufficiently high excess en
ergies in the n=4 ion, a transient at the mass of the 1-NpOH(NH3)(3) cluste
r is observed, and shown to be caused by loss of an ammonia unit in the n=4
cluster ion. This fragmentation process is suppressed by lowering the prob
e wavelength and avoiding multiphoton absorption, thus reducing the amount
of excess energy deposited in the [1-NpOH(NH3)(4)](+) ion.