Title of article :
Ethylene conversion to ethylidyne on Pd(1 1 1) and Pt(1 1 1): A first-principles-based kinetic Monte Carlo study
Author/Authors :
Hristiyan A. Aleksandrov، نويسنده , , Lyudmila V. Moskaleva، نويسنده , , Zhijian Zhao، نويسنده , , Duygu Basaran، نويسنده , , Zhao-Xu Chen، نويسنده , , Donghai Mei، نويسنده , , Notker R?sch، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
9
From page :
187
To page :
195
Abstract :
We present kinetic Monte Carlo simulations of ethylene conversion to ethylidyne on Pd(1 1 1) and Pt(1 1 1) surfaces, on the basis of reaction enthalpies and barriers obtained from periodic density functional calculations. We considered three possible mechanisms encompassing four different intermediates, ethyl, vinyl, ethylidene, and vinylidene. Our simulations predict that the most plausible pathway on both surfaces is ethylene → vinyl → vinylidene → ethylidyne. In contrast to earlier suggestions that the dehydrogenation to vinyl is rate-limiting on Pt(1 1 1), we found the hydrogenation of vinylidene to ethylidyne to be crucial on this surface. On Pd(1 1 1), the initial dehydrogenation of ethylene is rate-limiting. Hence, vinylidene species accumulate on Pt(1 1 1), while all intermediates on Pd(1 1 1) convert rapidly to ethylidyne without accumulation. The simulated apparent activation energies for the formation of ethylidyne on Pd(1 1 1), 94 kJ mol−1, and on Pt(1 1 1), 65 kJ mol−1, agree well with experimental results.
Keywords :
NSR , NOx , LNT , Reduction , Mechanism , Platinum , Isotope labelling , barium
Journal title :
Journal of Catalysis
Serial Year :
2012
Journal title :
Journal of Catalysis
Record number :
1223262
Link To Document :
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