1 |
Co-adsorption and mutual interaction of nCO plus mH(2) on the Fe(110) and Fe(111) surfaces Wang T, Tian XX, Yang Y, Li YW, Wang JG, Beller M, Jiao HJ Catalysis Today, 261, 82, 2016 |
2 |
Selenium adsorption at different coverages on Fe(100) and Fe(111): A DFT study Schwindt VC, Ardenghi JS, Bechthold P, Gonzalez EA, Jasen PV, Juan A, Batic BS, Jenko M Applied Surface Science, 315, 252, 2014 |
3 |
Oxidation and diffusion processes at the Mn-doped Fe(001) and Fe(110) surfaces from first-principles Chen S, Giorgi ML, Guillot JB, Geneste G Applied Surface Science, 258(22), 8613, 2012 |
4 |
The austenite/epsilon martensite interface: A first-principles investigation of the fcc Fe(1 1 1)/hcp Fe(0 0 0 1) system Lee SJ, Lee YK, Soon A Applied Surface Science, 258(24), 9977, 2012 |
5 |
CO dissociation on clean and hydrogen precovered Fe(111) surfaces Huo CF, Ren J, Li YW, Wang JG, Jiao HJ Journal of Catalysis, 249(2), 174, 2007 |
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A model corrosion inhibitor for in situ spectroscopic studies Heeg B, Klenerman D Langmuir, 16(4), 1783, 2000 |
7 |
Kinetic simulation of ammonia synthesis catalyzed by ruthenium Hinrichsen O Catalysis Today, 53(2), 177, 1999 |
8 |
Molecular structure of interfaces between plasma-polymerized acetylene films and steel substrates Tsai YM, Boerio FJ Journal of Applied Polymer Science, 70(7), 1283, 1998 |
9 |
Coadsorption of Ethanethiol with Sulfur, Oxygen, and Water on the Fe(100) Surface Cheng LC, Bocarsly AB, Bernasek SL, Ramanarayanan TA Langmuir, 12(2), 392, 1996 |
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Crystallite Shape and Iron Lattice Orientation in the Ammonia-Synthesis Catalyst Holme B, Tafto J Journal of Catalysis, 152(2), 243, 1995 |