Monte Carlo simulations of the adsorption of dimers on structured heterogeneous surfaces



Document title: Monte Carlo simulations of the adsorption of dimers on structured heterogeneous surfaces
Journal: Brazilian journal of chemical engineering
Database: PERIÓDICA
System number: 000308793
ISSN: 0104-6632
Authors: 1



Institutions: 1Universidade Federal do Rio de Janeiro, Escola de Quimica, Rio de Janeiro. Brasil
Year:
Season: Dic
Volumen: 18
Number: 4
Pages: 385-397
Country: Brasil
Language: Inglés
Document type: Artículo
Approach: Histórico, analítico
English abstract The effect of surface topography upon the adsorption of dimer molecules is analyzed by means of grand canonical ensemble Monte Carlo simulations. Heterogeneous surfaces were assumed to consist of a square lattice containing active sites with two different energies. These were distributed in three different configurations: a random distribution of isolated sites; a random distribution of grains with four high-energy sites; and a random distribution of grains with nine high-energy sites. For the random distribution of isolated sites, the results are in good agreement with the molecular simulations performed by Nitta et al. (1997). In general, the comparison with theoretical models shows that the Nitta et al. (1984) isotherm presents good predictions of dimer adsorption both on homogeneous and heterogeneous surfaces with sites having small differences in characteristic energies. The molecular simulation results also show that the energy topology of the solid surfaces plays an important role in the adsorption of dimers on solids with large differences in site energies. For these cases, the Nitta et al. model does not describe well the data on dimer adsorption on random heterogeneous surfaces (grains with one acid site), but does describe reasonably well the adsorption of dimers on more patchwise heterogeneous surfaces (grains with nine acid sites)
Disciplines: Química
Keyword: Fisicoquímica y química teórica,
Isotermas de adsorción,
Dímeros,
Superficies heterogéneas,
Simulación de Montecarlo
Keyword: Chemistry,
Physical and theoretical chemistry,
Adsorption isotherms,
Dimers,
Heterogeneous surfaces,
Monte Carlo simulation
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