Article

Charge transfer interactions of a Ru(II) dye complex and related ligand molecules adsorbed on Au(111).

School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, United Kingdom.
The Journal of chemical physics (impact factor: 3.09). 10/2011; 135(16):164702. DOI:10.1063/1.3656682 pp.164702
Source: PubMed

ABSTRACT The interaction of the dye molecule, N3 (cis-bis(isothiocyanato)bis(2,2(')-bipyridyl-4,4(')-dicarboxylato)-ruthenium(II)), and related ligand molecules with a Au(111) surface has been studied using synchrotron radiation-based electron spectroscopy. Resonant photoemission spectroscopy (RPES) and autoionization of the adsorbed molecules have been used to probe the coupling between the molecules and the substrate. Evidence of charge transfer from the states near the Fermi level of the gold substrate into the lowest unoccupied molecular orbital (LUMO) of the molecules is found in the monolayer RPES spectra of both isonicotinic acid and bi-isonicotinic acid (a ligand of N3), but not for the N3 molecule itself. Calibrated x-ray absorption spectroscopy and valence band spectra of the monolayers reveals that the LUMO crosses the Fermi level of the surface in all cases, showing that charge transfer is energetically possible both from and to the molecule. A core-hole clock analysis of the resonant photoemission reveals a charge transfer time of around 4 fs from the LUMO of the N3 dye molecule to the surface. The lack of charge transfer in the opposite direction is understood in terms of the lack of spatial overlap between the π∗-orbitals in the aromatic rings of the bi-isonicotinic acid ligands of N3 and the gold surface.

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Keywords

adsorbed molecules
 
aromatic rings
 
bi-isonicotinic acid
 
bi-isonicotinic acid ligands
 
Calibrated x-ray absorption spectroscopy
 
core-hole clock analysis
 
dye molecule
 
Fermi level
 
gold substrate
 
isonicotinic acid
 
ligand molecules
 
lowest unoccupied molecular orbital
 
molecules
 
monolayer RPES spectra
 
monolayers
 
N3 dye molecule
 
N3 molecule
 
Resonant photoemission spectroscopy
 
synchrotron radiation-based electron spectroscopy
 
valence band spectra
 

Andrew J Britton