The multi-photon ionization process of the hydrogen-bond cluster of pyridin
e-methanol has been investigated using a conventional and reflectron time-o
f-flight mass spectrometer (RTOF-MS) at 355 and 266 nm laser wavelengths, r
espectively. The sequences of the protonated cluster ions (CH3OH)(n)H+ and
(C5H5Nn)(CH3OH)(m)H+ (n = 1,2) were observed at both laser wavelengths, whi
le the sequence of the cluster ions (CH3)OHn (H2O)H+ was observed only at 3
55 nm laser wavelength. The difference between the relative signal intensit
ies of the protonated methanol cluster ions at different laser wavelengths
is attributed to different photoionization mechanisms. Some nascent cluster
ions in metastable states dissociated during free flight to the detector.
The dissociation kinetics is also discussed. (C) 2000 Elsevier Science B.V.