Article

Modeling intermolecular interactions of physisorbed organic molecules using pair potential calculations.

Peter Grünberg Institut (PGI-3), Forschungszentrum Jülich, 52425 Jülich, Germany.
The Journal of chemical physics (impact factor: 3.09). 12/2011; 135(23):234703. DOI:10.1063/1.3665923 pp.234703
Source: PubMed

ABSTRACT The understanding and control of epitaxial growth of organic thin films is of crucial importance in order to optimize the performance of future electronic devices. In particular, the start of the submonolayer growth plays an important role since it often determines the structure of the first layer and subsequently of the entire molecular film. We have investigated the structure formation of 3,4,9,10-perylene-tetracarboxylic dianhydride and copper-phthalocyanine molecules on Au(111) using pair-potential calculations based on van der Waals and electrostatic intermolecular interactions. The results are compared with the fundamental lateral structures known from experiment and an excellent agreement was found for these weakly interacting systems. Furthermore, the calculations are even suitable for chemisorptive adsorption as demonstrated for copper-phthalocyanine/Cu(111), if the influence of charge transfer between substrate and molecules is known and the corresponding charge redistribution in the molecules can be estimated. The calculations are of general applicability for molecular adsorbate systems which are dominated by electrostatic and van der Waals interaction.

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Keywords

calculations
 
charge transfer
 
chemisorptive adsorption
 
copper-phthalocyanine/Cu(111)
 
corresponding charge redistribution
 
electrostatic intermolecular interactions
 
entire molecular film
 
excellent agreement
 
first layer
 
fundamental lateral structures
 
future electronic devices
 
organic thin films
 
pair-potential calculations
 
substrate
 
van der Waals
 
van der Waals interaction
 
weakly interacting systems
 

Ingo Kröger