1 |
DFT study of chlorine adsorption on bimetallic surfaces - Case study of Pd3M and Pt3M alloy surfaces Pasti IA, Gavrilov NM, Mentus SV Electrochimica Acta, 130, 453, 2014 |
2 |
Bridging the materials gap between single crystal and supported catalysts using polycrystalline Ni/Pt bimetallic surfaces for cyclohexene hydrogenation Humbert MP, Stottlemyer AL, Menning CA, Chen JGG Journal of Catalysis, 280(1), 96, 2011 |
3 |
Electrochemical growth and dissolution of Ni on bimetallic Pd/Au(111) substrates Damian A, Maroun F, Allongue P Electrochimica Acta, 55(27), 8087, 2010 |
4 |
Replacing bulk Pt in Pt-Ni-Pt bimetallic structures with tungsten monocarbide (WC): Hydrogen adsorption and cyclohexene hydrogenation on Pt-Ni-WC Humbert MP, Menning CA, Chen JG Journal of Catalysis, 271(1), 132, 2010 |
5 |
Correlating hydrogenation activity with binding energies of hydrogen and cyclohexene on M/Pt(111) (M = Fe, Co, Ni, Cu) bimetallic surfaces Humbert MP, Chen JGG Journal of Catalysis, 257(2), 297, 2008 |
6 |
Tuning catalytic properties of bimetallic surfaces: Oxygen adsorption on pseudomorphic Pt/Ru overlayers Lischka M, Mosch C, Gross A Electrochimica Acta, 52(6), 2219, 2007 |
7 |
Infrared reflection absorption study of carbon monoxide adsorption on Pd/Cu(111) Wadayama T, Abe K, Osano H Applied Surface Science, 253(5), 2540, 2006 |
8 |
Quantum-chemical calculations of CO and OH interacting with bimetallic surfaces Shubina TE, Koper MTM Electrochimica Acta, 47(22-23), 3621, 2002 |
9 |
Oxygen reduction on bare and Pt monolayer-modified Ru(0001), Ru(1010) and Ru nanostructured surfaces Inoue H, Brankovic SR, Wang JX, Adzic RR Electrochimica Acta, 47(22-23), 3777, 2002 |
10 |
The structure, growth and reactivity of electrodeposited Ru/Au(111) surfaces Strbac S, Maroun F, Magnussen OM, Behm RJ Journal of Electroanalytical Chemistry, 500(1-2), 479, 2001 |