A cellular automaton model for the catalytic formation of NH3
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference19 articles.
1. An interpretation of the high-pressure kinetics of ammonia synthesis based on a microscopic model
2. Bridging the "Pressure Gap" between Ultrahigh-Vacuum Surface Physics and High-Pressure Catalysis
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4. The CO+O2 reaction on metal surfaces. Simulation and mean‐field theory: The influence of diffusion
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1. A cellular automaton for a surface reaction: Stabilization from chaotic to periodical states;Advances in Engineering Software;2010-01
2. Stabilization from chaotic to periodical states in a model of cellular automaton for oxidation ofCO;Physical Review E;2006-07-18
3. A NONTHERMAL MODEL FOR CATALYTIC SURFACE REACTION OF THE TYPE A2+B2→2AB: A MONTE CARLO SIMULATION STUDY;International Journal of Modern Physics C;2003-12
4. Surface-subsurface model for a dimer-dimer catalytic reaction: a Monte Carlo simulation study;Journal of Physics A: Mathematical and General;2002-01-28
5. Catalytic formation of ammonia: a lattice gas non-thermal Langmuir–Hinshelwood mechanism;Surface Science;2001-11
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