Characterization of the surface structure of CH3 and CF3 terminated n-alkanethiol monolayers self assembled on Au{111}
- 22 November 1998
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 109 (20) , 9134-9147
- https://doi.org/10.1063/1.477629
Abstract
Surface elemental and structural characterization of hexadecanethiol and heptadecanethiol ( C 16 and C 17 for short) and 16,16,16-trifluorohexadecanethiol ( FC 16 ) self-assembledmonolayers(SAMs) on a Au{111} surface have been obtained from time-of-flightscattering and recoiling spectrometry. The clean Ausurface was also characterized in order to identify the azimuthal orientation of the SAMs with respect to the substrate. Classical ion trajectory simulations were used to relate the experimental scattering and recoiling data to the surface structure. The scattered and recoiled atoms originate from the outermost five–six atomic layers, and azimuthal anisotropy was observed in the measurements. The results provide a model for the SAMs in which the alkyl chains chemisorb with the S atoms situated above the face-centered-cubic (fcc) threefold sites of the Au{111} surface to form a continuous film with a (√3×√3)R30° structure that fully covers the Ausurface. The orientation of the molecular axis azimuth of the SAMs relative to the Au azimuthal directions was determined. The data indicate that the molecular chains have specific tilt and twist angles relative to the Ausurface and six coexisting domains resulting from the six equivalent tilt directions of the molecular axis. Dramatic changes in the anisotropicpatterns of the ion scattering azimuthal scans from the surfaces of the SAMs with different terminations were observed. These phenomena result from the different tilt angles of the CH 3 and CF 3 groups. The data are consistent with free rotation of both the CH 3 and CF 3 groups. The C 16 SAM exhibited the best azimuthal features and was more resistant to radiation damage from the incident Ar + scattering beam than the other films. Due to the tilt angle of the SAMs, an “ion’s eye view” of the structure, i.e., the positions of the atomic cores as experienced by the incoming keV ions, reveals a regular array of sloping cavities within each unit cell.Keywords
This publication has 55 references indexed in Scilit:
- Self-Assembled n-Alkanethiolate Monolayers on Underpotentially Deposited Adlayers of Silver and Copper on GoldJournal of the American Chemical Society, 1997
- Desorption of Butanethiol from Au(111) during Storage in Ultrahigh Vacuum: Effects on Surface Coverage and Stability toward Displacement by Solution-Phase ThiolsLangmuir, 1997
- Formation and Structure of Self-Assembled MonolayersChemical Reviews, 1996
- Polymeric Self-Assembled Monolayers. 3. Pattern Transfer by Use of Photolithography, Electrochemical Methods, and an Ultrathin, Self-Assembled Diacetylenic ResistJournal of the American Chemical Society, 1995
- New monolayer phases of n-alkane thiols self-assembled on Au(111): Preparation, surface characterization, and imagingThe Journal of Chemical Physics, 1994
- Structure of hydrogen on the Si{100} surface in the (2×1)-H monohydride, (1×1)-H dihydride, andc(4×4)-H phasesPhysical Review B, 1993
- An atomic force microscopy study of self-assembled octadecyl mercaptan monolayer adsorbed on gold(111) under potential controlLangmuir, 1993
- A simple interpretation of polar solvation dynamicsThe Journal of Physical Chemistry, 1993
- Time-of-flight scattering and recoiling spectrometer (TOF-SARS) for surface analysisReview of Scientific Instruments, 1990
- Direct recoil spectrometryCritical Reviews in Solid State and Materials Sciences, 1988