A hamiltonian with a subset of normal modes for studying mode-specific energy transfer in intermolecular collisions

Authors
Citation
Ty. Yan et Wl. Hase, A hamiltonian with a subset of normal modes for studying mode-specific energy transfer in intermolecular collisions, J PHYS CH A, 105(12), 2001, pp. 2617-2625
Citations number
52
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF PHYSICAL CHEMISTRY A
ISSN journal
10895639 → ACNP
Volume
105
Issue
12
Year of publication
2001
Pages
2617 - 2625
Database
ISI
SICI code
1089-5639(20010329)105:12<2617:AHWASO>2.0.ZU;2-Q
Abstract
A Hamiltonian is described in which some degrees of freedom are represented by normal modes and the remainder retain their complete couplings and anha rmonicities. The classical equations of motion for this Hamiltonian may be efficiently integrated in Cartesian coordinates. This Hamiltonian is used t o study the mode specificity of energy transfer in Ne-atom collisions with alkanethiolate chains and a monolayer of il-hexyl thiolate chains self-asse mbled on Au{111}. The intermolecular and intramolecular degrees of freedom for these chain and self-assembled monolayer (SAM) systems are represented by normal modes. Collinear collisions with n-hexyl and n-octadecyl thiolate chains show that only one mode is excited at low collision energies. Mode specificity is also observed in Ne-atom collisions with the SAM. As expecte d from the adiabatic/ impulsive model of T --> V energy transfer, higher fr equency modes of the chains and monolayer are excited as the Ne-atom transl ational energy is increased. A comparison, between this normal mode model a nd an anharmonic surface model, suggests it is efficient energy transfer to highly anharmonic modes of the surface which give rise to the Boltzmann co mponent in the translational energy distribution of the scattered Ne atoms.