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Self-assembled monolayer formation of pentamers-like molecules onto FCC(111) surfaces: The case of curcuminoids onto Au(111) surface

  • E. Cisternas
  • , G. J. Dos Santos
  • , M. Flores
  • , E. E. Vogel
  • , A. J. Ramirez-Pastor

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

The adsorption of rigid straight electrically polarized pentamers over a FCC(111) surface is studied. The model was inspired by the deposition of 2-thiophene molecules over the Au(111) surface, which was previously characterized by experimental techniques and simulated under the frame of the density functional theory. We now obtain and report the charge distribution of the molecule which allows to propose a deposition model followed by Monte Carlo simulations over an ad-hoc lattice gas model. We show that for a certain value of the chemical potential there exists an isotropic-nematic phase transition which can explain the formation of a self-assembled monolayer like the one observed in the transmission electron microscopy images. An order parameter is defined to characterize the transition which presents a step-like behavior at a critical chemical potential value. The possible nature of the nematic transition in conjunction with an ergodicity breakdown is discussed as future work by means of statistical physics techniques.

Original languageEnglish
Article number010025
JournalNano Express
Volume1
Issue number1
DOIs
StatePublished - 1 Jun 2020
Externally publishedYes

Keywords

  • density functional theory
  • molecular adsorption
  • monte carlo simulations
  • phase transitions
  • self-assembled monolayers

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