1 |
Epitaxial growth of well-ordered ultra-thin Al2O3 film on NiA1 (110) by a single-step oxidation Lay TT, Yoshitake M, Song W Applied Surface Science, 239(3-4), 451, 2005 |
2 |
Effects of surface cleaning on oxidation of NiAl(110) Song WJ, Yoshitake M Applied Surface Science, 241(1-2), 164, 2005 |
3 |
A work function study of ultra-thin alumina formation on NiAl(110) surface Song WJ, Yoshitake M Applied Surface Science, 251(1-4), 14, 2005 |
4 |
X-ray photoelectron spectroscopy and low-energy electron diffraction study on the oxidation of NiAl(110) surfaces at elevated temperatures Song W, Yoshitake M Thin Solid Films, 464-65, 52, 2004 |
5 |
Adsorption and thermal decomposition of C2D5I on the (110) and (111) planes of NiAl: A temperature programmed deposition and x-ray photoelectron spectroscopy study Chaturvedi S, Strongin DR Journal of Vacuum Science & Technology A, 17(3), 810, 1999 |
6 |
Adsorption and dissociation of methanol on aluminum (100) : Theoretical analysis of reaction mechanism Sein LT, Jansen SA Journal of Physical Chemistry B, 102(13), 2415, 1998 |
7 |
Adsorption and Decomposition of Methyl-Iodide on Low-Index Planes of NiAl Chaturvedi S, Strongin DR Langmuir, 13(12), 3162, 1997 |
8 |
A Comparative Theoretical-Study of Atomic-Hydrogen Adsorption on the (110) Faces of Al, Cu, Ni, and NiAl Castro GR, Drakova D, Grillo ME, Doyen G Journal of Chemical Physics, 105(21), 9640, 1996 |
9 |
Quantification of the Composition of Alloy and Oxide Surfaces Using Low-Energy Ion-Scattering Jacobs JP, Reijne S, Elfrink RJ, Mikhailov SN, Brongersma HH, Wuttig M Journal of Vacuum Science & Technology A, 12(4), 2308, 1994 |