2006 AIChE Annual Meeting
(628e) Correlating Electronic Properties of Bimetallic Surfaces with Reaction Pathways of C2 Hydrocarbons
Authors
DFT-calculated binding energy and BOC-calculated activation barrier values were used to calculate the selectivity for acetylene hydrogenation vs. ethylene hydrogenation. The results showed that for monometallic fcc(111) surfaces, the selectivity for acetylene hydrogenation followed the trend Ni > Pt > Pd. The selectivity for thermodynamically stable bimetallic surfaces was found to be lower than the corresponding parent metals. Parallel reactor studies of selective hydrogenation of acetylene are underway to verify the DFT/BOC predictions.
References
(1) Pallassana, V.; Neurock, M. J Catal 2000, 191, 301-317. (2) Mavrikakis, M.; Hammer, B.; Norskov, J. K. Phys. Rev. Lett. 1998, 81, 2819-2822. (3) Kitchin, J. R.; Norskov, J. K.; Barteau, M. A.; Chen, J. G. Phys. Rev. Lett. 2004, 93, 156801-156815. (4) Kitchin, J. R.; Khan, N. A.; Barteau, M. A.; Chen, J. G.; Yakshinksky, B.; Madey, T. E. Surf. Sci. 2003, 544, 295-308. (5) Hwu, H. H.; Eng, J.; Chen, J. G. J. Am. Chem. Soc. 2002, 124, 702-709. (6) Goda, A. M.; Barteau, M. A.; Chen, J. G. J. Phys. Chem. B 2006, Accepted. (7) Zellner, M. B.; Goda, A. M.; Skoplyak, O.; Barteau, M. A.; Chen, J. G. Surf. Sci. 2005, 583, 281-296.