Ammonia synthesis on three metal surfaces (Zr, Ru, and Pd) is investigated using density functional theory calculations. In addition to N2 dissociation, all the transition states of the hydrogenation reactions from N to N H3 are located and the reaction energy profiles at both low and high surface coverages are compared and analyzed. The following are found: (i) Surface coverage effect on dissociation reactions is more significant than that on association reactions. (ii) The difference between N and H chemisorption energies, the so-called chemisorption energy gap which is a measure of adsorption competition, is vital to the reactivity of the catalysts. (iii) The hydrogenation barriers can considerably affect the overall rate of ammonia synthesis. A simple model to describe the relationship between dissociation and association reactions is proposed. © 2007 American Institute of Physics.
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Song, T., & Hu, P. (2007). Insight into the adsorption competition and the relationship between dissociation and association reactions in ammonia synthesis. Journal of Chemical Physics, 127(23). https://doi.org/10.1063/1.2799984