331 results on '"Surnev, S."'
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2. Interplay between magnetic, electronic and vibrational effects in monolayer Mn_3O_4 grown on Pd(100)
3. Two-dimensional manganese oxide nanolayers on Pd(100): Surface phase diagram
4. Structural and vibrational properties of two-dimensional $\rm Mn_xO_y$ nanolayers on Pd(100)
5. Epitaxial NiWO4 films on Ni(110): Experimental and theoretical study of surface stability
6. PECVD of carbon by inverted fireballs: From sputtering, bias enhanced nucleation to deposition
7. Two-dimensional iron oxide bi-and trilayer structures on Pd(100)
8. Diamond Like Carbon Deposition by Inverted Fireballs
9. 2D Ternary Oxide Layers: New Paradigms of Structure and Stoichiometry
10. The (100)→(111) Transition in Epitaxial Manganese Oxide Nanolayers
11. Surface structure of nickel oxide layers on a Rh(111) surface
12. Thermal Diffusivity Measurements in Semiconductors — Influence of the Carrier Diffusion and Recombination
13. Cobalt oxide nanolayers on Pd(100): The thickness-dependent structural evolution
14. Oxygen adsorption on stepped Pd(100) surfaces
15. Electronic structure of bimetallic Ni–Rh nanowires
16. α-Sexithiophene on Cu(1 1 0) and Cu(1 1 0)–(2 × 1)O: An STM and NEXAFS study
17. Silver nanostructures on a c(4 × 2)-NiO x/Pd(1 0 0) monolayer
18. Growth of cobalt on a VO(1 1 1) surface: Template, surfactant or encapsulant role of the oxide nanolayer?
19. Metal-oxide boundary effects in vanadium oxide – Rh(111) inverse model catalysts: a RAIRS, STM and TPD study
20. Metal supported oxide nanostructures: model systems for advanced catalysis
21. The growth of epitaxial VN(1 1 1) nanolayer surfaces
22. Oxidation of vanadium nitride and titanium nitride coatings
23. Reactions on Inverse Model Catalyst Surfaces: Atomic Views by STM
24. Unusual CO adsorption sites on vanadium oxide-Pd(111) 'inverse model catalyst' surfaces
25. Strain relaxation and surface morphology of nickel oxide nanolayers
26. Adsorption and reaction of CO on vanadium oxide–Pd(111) “inverse” model catalysts: an HREELS study
27. Squid-magnetometry on ferromagnetic Ni-nanowires embedded in oriented porous silicon channels
28. Reactive growth of NiO ultrathin films on Pd(1 0 0): a multitechnique approach
29. Growth and thermal behaviour of NiO nanolayers on Pd(1 0 0)
30. Vanadium oxide nanostructures on Rh(1 1 1): Promotion effect of CO adsorption and oxidation
31. Combined photoacoustic differential scanning calorimeter cell: Application to phase transitions
32. The growth of ultrathin films of vanadium oxide on TiO 2( [formula omitted])
33. V 2O 3(0 0 0 1) surface terminations: from oxygen- to vanadium-rich
34. V 2O 3(0 0 0 1) surface terminations: a density functional study
35. X-ray diffraction and thermal wave analysis of primary recrystallization in electrodeposited copper layers at room temperature
36. Vanadium on TiO 2( [formula omitted]): adsorption site and sub-surface migration
37. High-resolution electron spectroscopy of different adsorption states of ethylene on Pd(1 1 1)
38. Adsorption and reaction of CO on a ceria–Rh(1 1 1) “inverse model catalyst” surface
39. Ultrathin WO3 Bilayer on Ag(100): A Model for the Structure of 2D WO3 Nanosheets
40. Fabrication of a Bimodal Ferromagnetic Nanosystem in an Etched Silicon Structure and its Magnetic and Magneto-Optic Characterization
41. Thermal Diffusivity Measurements in Semiconductors — Influence of the Carrier Diffusion and Recombination
42. Chemical reactivity of the V–Pd(1 1 1) subsurface alloy: adsorption of CO
43. Growth and thermal properties of ultrathin cerium oxide layers on Rh( [formula omitted])
44. Molecular architecture via substrate templating: a submolecular resolution STM study of bithiophene on Ni(1 1 0) 4×1-S
45. Surface structures of ultrathin vanadium oxide films on Pd( [formula omitted])
46. First-principles calculations for V xO y grown on Pd(1 1 1)
47. Surface structures of thallium on Ge(1 1 1)
48. Surface and subsurface oxygen on Pd(111)
49. CO adsorption on Pd(1 1 1): a high-resolution core level photoemission and electron energy loss spectroscopy study
50. Probing the metal sites of a vanadium oxide–Pd(111) ‘inverse catalyst’: adsorption of CO
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