43 results on '"Comelli G."'
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2. Interaction of carbon dioxide with Ni(110): A combined experimental and theoretical study
3. Thermal stability of the Rh(110) missing-row reconstruction: Combination of real-time core-level spectroscopy andab initiomodeling
4. Two-Step Reaction on a Strained, Nanoscale Segmented Surface
5. Coverage-dependent hydrogen adsorption site determination onRh(100)by high-resolution core-level spectroscopy
6. Spectroscopic Link between Adsorption Site Occupation and Local Surface Chemical Reactivity
7. Real-time XPS investigation of the impact-energy dependence ofC2H4adsorption on Ag(100)
8. Order-disorder character of the(3×3)to(3×3)R30°phase transition of Sn on Ge(111)
9. Distinct Reaction Mechanisms in the Catalytic Oxidation of Carbon Monoxide on Rh(110): Scanning Tunneling Microscopy and Density Functional Theory Studies
10. Surface and Bulk Normal State Transport Properties inK3C60
11. Core-level spectroscopy of hydrocarbons adsorbed on Si(100)-(2×1): A systematic comparison
12. Reply to “Comment on ‘Correlation of x-ray absorption and x-ray photoemission spectroscopies in amorphous carbon nitride’ ”
13. Oxygen-induced Rh3d5/2surface core-level shifts on Rh(111)
14. Transient CO adsorption and the catalytic properties of surfaces
15. Morphology and magnetic properties of thin films of Rh on highly oriented pyrolitic graphite
16. Chemical Shift Resolved Photoionization Cross Sections of Amorphous Carbon Nitride
17. Phase transition of dissociatively adsorbed oxygen on Ag(001)
18. Nuclear dynamics during the N1sautoionization of physisorbedN2
19. Erratum: Phase transition, molecular motions, and inequivalent carbon atoms inK3C60(111)single-phase ordered films [Phys. Rev. B59, 16 071 (1999)]
20. Orientational anisotropy in oxygen dissociation on Rh(110)
21. Correlation of x-ray absorption and x-ray photoemission spectroscopies in amorphous carbon nitride
22. Phase transition, molecular motions, and inequivalent carbon atoms inK3C60 (111)single-phase ordered films
23. Oxygen Induced Reconstruction of the Rh(100) Surface: General Tendency Towards Threefold Oxygen Adsorption Site on Rh Surfaces
24. Experimental Evidence of Magnetic Ordering at the Rh(100) Surface
25. Physics of theBe(101¯0)Surface Core Level Spectrum
26. Femtosecond dynamics of adsorbate charge-transfer processes as probed by high-resolution core-level spectroscopy
27. Ultrafast Charge Transfer Times of Chemisorbed Species from Auger Resonant Raman Studies
28. Order-disorder phase transitions of oxygen on Rh(100)
29. Structural determination of the Pd{110}(2×1)p2mg-CO system by means of high-energy x-ray photoelectron diffraction
30. Adsorption and temperature-dependent decomposition ofSO2on Cu(100) and Cu(111): A fast and high-resolution core-level spectroscopy study
31. O/Rh(100)p(2×2)→c(2×2)order-disorder phase transition
32. Nitrogen adsorption on Rh(110)
33. Adsorption Site Determination by Means of Surface Core Level Shift High Energy Photoelectron Diffraction:Pd{110}(2×1)p2mg−CO
34. Adsorption of oxygen on Cu(100). I. Local structure and dynamics for two atomic chemisorption states
35. Adsorption of oxygen on Cu(100). II. Molecular adsorption and dissociation by means of OK-edge x-ray-absorption fine structure
36. Structural determination ofc(2×2)N/Cu(100): A multiple-scattering surface-EXAFS study
37. M4,5absorption edge of Ag, Pd, and Rh by reflection electron-energy-loss spectroscopy: Role of nondipole transitions
38. Adsorbate-induced surface core-level shifts of Pd(110)
39. Enhanced anharmonicity in the interaction of low-Zadsorbates with metal-surfaces
40. Near-edge x-ray-absorption fine-structure spectroscopy measurement of thep-symmetry unoccupied states of silver, palladium, and palladium silicide
41. Extended x-ray-absorption fine-structure studies of diamond and graphite
42. Structural studies of argon-sputtered amorphous carbon films by means of extended x-ray-absorption fine structure
43. Comparison between optically excited and electron-excited transitions above oxygen and nitrogenKedges inCu2O, O/Al, O/Ni,SiO2, andSi3N4
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