Title of article :
Decomposition of N2O over the surface of cobalt spinel: A DFT account of reactivity experiments
Author/Authors :
Witold Piskorz، نويسنده , , Filip Zasada، نويسنده , , Pawe? Stelmachowski، نويسنده , , Andrzej Kotarba، نويسنده , , Zbigniew Sojka، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
5
From page :
418
To page :
422
Abstract :
The DFT molecular modeling of N2O decomposition over cobalt spinel (1 0 0) plane was performed using a cluster approach, and applied to rationalize the experimental reactivity data. The energetics of the postulated elementary steps such as N2O adsorption, N2O activation through dissociative electron or oxygen atom transfer, surface diffusion of resultant oxygen intermediates, and their recombination into O2, was evaluated and discussed. The geometry and electronic structure of the implicated active sites and intermediates were determined. Three different transition states were found for the activation of nitrous oxide molecule. In the preferred electron transfer mechanism, involving a monodentate transition state, the N2O activation and the formation of dioxygen are energetically the most demanding steps, whereas the barrier for the oxygen surface diffusion was found to be distinctly smaller. For the oxygen atom transfer the reaction is energetically constraint by the Nsingle bondO bond-breaking step. The inhibiting effect of co-adsorbed water and oxygen on the particular reaction steps was briefly addressed.
Keywords :
N2O , Inhibition , Cobalt , molecular modeling , decomposition , Mechanism , spinel , DFT , deN2O , Co3O4
Journal title :
CATALYSIS TODAY
Serial Year :
2008
Journal title :
CATALYSIS TODAY
Record number :
1236607
Link To Document :
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