Kj. Gaffney et al., Femtosecond dynamics of electrons photoinjected into organic semiconductors at aromatic-metal interfaces, J PHYS CH B, 105(38), 2001, pp. 9031-9039
The layer dependent evolution of the unoccupied electronic structure and el
ectron dynamics at the naphthalene/ Ag(1 1 1) and the anthracene/Ag(1 1 1)
interfaces have been investigated with femtosecond time and angle resolved
two photon photoemission. With the exception of the peaks observed for the
naphthalene monolayer, all excitations in the two photon photoemission spec
tra fit a hydrogenic progression, substantiating their assignment as image
potential states. The monolayer excitations for naphthalene cannot be assig
ned as either image potential states or electron affinity (EA) levels, but
rather as hybridized EA/image potential states. The binding energies and li
fetimes of the image potential states for naphthalene and anthracene exhibi
t two significant differences that demonstrate the tremendous variation in
the coupling between the image potential and the EA levels of naphthalene a
nd those of anthracene. First., the binding energies at the naphthalene/ Ag
(1 1 1) interface exceed those of the anthracene/Ag(1 1 1) interface, even
though anthracene has a larger EA than naphthalene. Second, the 1. 1 ps lif
etime for the n = 1 image potential state for a bilayer of anthracene excee
ds the n = 1 lifetime for a bilayer bf naphthalene by a factor of 30. Theor
etical calculations demonstrate that the transition from a near resonant to
a nonresonant interaction between the image potential and the adsorbate EA
levels causes these significant variations in binding energies and lifetim
es.