Energy disposal during desorption of D2 from the surface and subsurface region of Ni(111).
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[1] P. Sautet,et al. Heterogeneous Catalysis through Subsurface Sites , 2000 .
[2] S. Darling,et al. Influence of steps on the interaction between adsorbed hydrogen atoms and a nickel surface , 1999 .
[3] A. Alavi,et al. Physical origin of the high reactivity of subsurface hydrogen in catalytic hydrogenation , 1999 .
[4] M. Murphy,et al. Translational energy release in the recombinative desorption of H2 from Ag(111) , 1997 .
[5] M. Murphy,et al. TRANSLATIONAL AND VIBRATIONAL ENERGY RELEASE IN NITROGEN RECOMBINATIVE DESORPTION FROM CU(111) , 1997 .
[6] Ronnie Kosloff,et al. Quantum dissipative dynamics of adsorbates near metal surfaces: A surrogate Hamiltonian theory applied to hydrogen on nickel , 1997 .
[7] R. A. Olsen,et al. Direct subsurface absorption of hydrogen on Pd(111): Quantum mechanical calculations on a new two-dimensional potential energy surface , 1995, chem-ph/9512006.
[8] B. Hayden,et al. The dynamics of nitrogen dissociation on W(100)-c(2 × 2)Cu , 1995 .
[9] K. Son,et al. Carbon-carbon bond activation in cyclopropane by energetic forms of hydrogen on the Ni(100) surface , 1995 .
[10] M. Mavrikakis,et al. Low-temperature hydrogenation of cyclohexene by energetic forms of hydrogen on the Ni(100) surface , 1995 .
[11] A. Hodgson,et al. The recombinative desorption of D2 from Ag(111): temperature-programmed desorption and low energy electron diffraction , 1995 .
[12] T. R. Trautman,et al. Ethylene Hydrogenation on Ni(111) by Bulk Hydrogen , 1994 .
[13] B. Hayden,et al. Precursor dynamics in dissociative hydrogen adsorption on W (100) , 1994 .
[14] A. D. Johnson,et al. The Chemistry of Bulk Hydrogen: Reaction of Hydrogen Embedded in Nickel with Adsorbed CH3 , 1992, Science.
[15] K. J. Maynard,et al. A new mechanism for absorption: collision-induced absorption , 1991 .
[16] J. White,et al. Evidence for a new surface state of hydrogen on Ni(111) , 1990 .
[17] J. White,et al. On the mechanism of subsurface hydrogen formation on Ni(111) , 1990 .
[18] A. Luntz,et al. Molecular beam studies of H2 and D2 dissociative chemisorption on Pt(111) , 1990 .
[19] A. Winkler,et al. Wide range nozzle beam adsorption data for the systems H2/nickel and H2/Pd(100) , 1989 .
[20] S. Andersson,et al. Adsorption of hydrogen on a stepped nickel surface , 1988 .
[21] H. Steinrück,et al. The role of surface defects in the adsorption and sesorption of hydrogen on Ni(111) , 1987 .
[22] J. N. Russell,et al. Hydrogen implantation in Ni(111) — A study of H2 desorption dynamics from the bulk , 1987 .
[23] J. N. Russell,et al. Isotope effects in hydrogen adsorption on Ni(111): Direct observation of a molecular precursor state , 1986 .
[24] D. O. Hayward,et al. The variation of the sticking probability of hydrogen and deuterium on Ni(111) with energy and angle of incidence , 1986 .
[25] G. Ertl,et al. Dynamics of interaction of H2 and D2 with Ni(110) and Ni(110) surfaces , 1985 .
[26] H. Steinrück,et al. The sticking coefficient of H2 on Ni(111) as a function of particle energy and angle of incidence: A test of detailed balancing , 1985 .
[27] J. Davies,et al. Absolute coverage and isostemc heat of adsorption of deuterium on Pt(111) studied by nuclear microanalysis , 1982 .
[28] A. Winkler,et al. Adsorption kinetics for hydrogen adsorption on nickel and coadsorption of hydrogen and oxygen , 1982 .
[29] R. Cavanagh,et al. State selected velocity measurements: NO/Ru(001) thermal desorption , 1982 .
[30] R. David,et al. The angular dependence of flux, mean energy and speed ratio for D2 molecules desorbing from a Ni(111) surface , 1979 .
[31] W. H. Weinberg,et al. Chemisorption geometry of hydrogen on Ni(111): Order and disorder , 1979 .
[32] G. Ertl,et al. Adsorption of hydrogen on a Pt(111) surface , 1976 .
[33] A. E. Dabiri,et al. Spatial and speed distributions of H2 and D2 desorbed from a polycrystalline nickel surface , 1971 .
[34] P. Emmett,et al. The Role of Hydrogen in Raney Nickel Catalysts , 1959 .