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Diffusion in tight confinement: a lattice-gas cellular automaton approach. II. Transport properties

Academic Article
Publication Date:
2007
Short description:
Diffusion in tight confinement: a lattice-gas cellular automaton approach. II. Transport properties / Demontis, Pierfranco; Pazzona, Federico Giovanni; Suffritti, Giuseppe Baldovino. - 126:19(2007), pp. 1-8. [10.1063/1.2721547]
abstract:
In this second paper the authors study the transport properties of the lattice-gas cellular automaton presented in Paper I [J. Chem. Phys. 126, 194709 (2007)] to model adsorption and dynamics of particles in a lattice of confining cells. Their work shows how a surprisingly simple parallel rule applied to a static network of cells joined by links set in space and time can generate a wide range of dynamical behaviors. In their model the cells are the elementary constituent objects of the network. They are a portion of space structured in sites which are energetically different. Each cell can accommodate a given maximum number of particles, and each pair of neighboring cells can exchange at most one particle at a time. The predictions of the model are in qualitative agreement with both experimental observations and molecular dynamics simulation results.
Iris type:
1.1 Articolo in rivista
Keywords:
Porous materials; lattice theory; cellular automata; adsorption
List of contributors:
Demontis, Pierfranco; Pazzona, Federico Giovanni; Suffritti, Giuseppe Baldovino
Handle:
https://iris.uniss.it/handle/11388/264591
Full Text:
https://iris.uniss.it//retrieve/handle/11388/264591/195826/Demontis_P_Articolo_2007_Diffusion.pdf
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