A mechanism for metal cationization of phenyl group containing hydrocarbons
is discussed. Intact molecules and their fragments are emitted from a thin
organic layer covering a metal surface bombarded by fast ions. It is shown
that the process of associative ionization of a neutral hydrocarbon molecu
le and a neutral excited metal atom, occurring above the surface, may contr
ibute to the yield of cationized molecules. To demonstrate this we have cal
culated the potential energy curves for the model System C6H6 + Me (Me = Ag
, Cu, Au) making use of the density functional theory. The initial states o
f the metal atoms approaching the benzene ring along the C-6 symmetry axis
were set as the ground, ionic, and excited in (n - 1)d(9)ns(2) electronic c
onfiguration. (C) 2001 Elsevier Science B.V. All rights reserved.