Growth Dynamics of Ultrathin Films of Benzo[1,2- b :4,5- b ']dithiophene Derivatives on Au(111): A Photoelectron Spectroscopy Investigation.
Angelo StummoMonica MontecchiFrancesca ParentiDavide VanossiFontanesi ClaudioRaffaella CapelliLuca PasqualiPublished in: Langmuir : the ACS journal of surfaces and colloids (2023)
Ultrathin films of a stereoisomeric mixture of benzo[1,2- b :4,5- b ']dithiophene derivatives were grown by thermal evaporation in vacuum on Au(111), and they were studied in situ by photoelectron spectroscopy. X-ray photons from a non-monochromatic Mg Kα conventional X-ray source and UV photons from a He I discharge lamp equipped with a linear polarizer were used. He I photoemission results were compared with density functional theory (DFT) calculations: density of states (DOS) and 3D molecular orbital density distribution. Au 4f, C 1s, O 1s, and S 2p core-level components suggest a surface rearrangement as a function of film nominal thickness, with the variation of the molecular orientation, from flat-laying at the initial deposition to tilted toward the surface normal at coverages exceeding 2 nm. Eventually, the DFT results were exploited in assigning of the valence band experimental structures. Moreover, polarization-dependent photoemission confirmed the tilted arrangement of the molecules, starting at 2 nm. A variation of the work function of 1.4 eV with respect to the clean substrate was measured, together with a valence band offset of 1.3 eV between the organic layer and gold.
Keyphrases
- density functional theory
- high resolution
- reduced graphene oxide
- molecular dynamics
- sensitive detection
- single molecule
- room temperature
- dual energy
- photodynamic therapy
- solid state
- optical coherence tomography
- high efficiency
- loop mediated isothermal amplification
- carbon nanotubes
- quantum dots
- structure activity relationship
- magnetic resonance imaging
- image quality
- ionic liquid
- molecular docking
- molecular dynamics simulations