191 results on '"Jimenez-Garay, R."'
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2. A study on the non-isothermal transformation kinetics of glassy alloys when the nucleation frequency and crystal growth rate depend on time as a power law: Application to the crystallization of the Ag 0.16As 0.42Se 0.42 semiconductor glass
3. Light-induced changes in the structure and optical dispersion and absorption of amorphous As 40S 20Se 40 thin films
4. On the glass-crystal transformation kinetics by using differential scanning calorimetry under non-isothermal regime: Application to the crystallization of the Ag 0.16As 0.46Se 0.38 semiconductor glass
5. Light structured deposition (1): Material properties
6. Optical properties of amorphous (As0.33S0.67)100−xTex (x = 0, 1, 5 and 10) chalcogenide thin films, photodoped step-by-step with silver
7. A theoretical method to analyze the glass–crystal transformation kinetics under non-isothermal regime: Application to crystallization of the Ge 0.13Sb 0.23Se 0.64 glassy alloy
8. Theoretical study on the mechanism and transformation kinetics under non-isothermal conditions. Application to the crystallization of Sb 0.12As 0.36Se 0.52 glassy alloy
9. Structural domains and electronic contributions in amorphous chalcogenides
10. An alternative method for analyzing the non-isothermal glass-crystal transformation kinetics: Application to the crystallization of some alloys of Ge-Sb-Se and Sb-As-Se glassy systems
11. A study on non-isothermal transformation kinetics: Application to the crystallization of the Ge 0.18Sb 0.23Se 0.59 glassy alloy
12. Levels of thermal stability in some glassy alloys of the Ge–Sb–Se system by differential scanning calorimetry
13. Influence of the deposition technique on the structural and optical properties of amorphous As [sbnd]S films
14. A comparative study on the single-scan and multiple-scan techniques in differential scanning calorimetry: Application to the crystallization of the semiconducting Ge 0.13Sb 0.23Se 0.64 alloy
15. A comparative study on the glass-forming ability of some alloys in the Sb–As–Se system by differential scanning calorimetry
16. Impingement effect on the glass–crystal transformation kinetics by using DSC under non-isothermal regime. Application to the crystallization of the several semiconducting alloys of the Sb–As–Se and Ge–Sb–Se glassy systems
17. Spectral dependence of the complex refractive index of GeS2 chalcogenide glass thin films
18. Crystallization of Ge0.08Sb0.15Se0.77 glass studied by DSC
19. A theoretical method for analyzing the glass-crystal transformation observed by DSC in the continuous heating regime. Application to the Sb 0.16As 0.36Se 0.48 semiconducting alloy
20. A study on the variations in the density of nucleated particles with the maximum crystallization rate and with the corresponding temperature, by using differential scanning calorimetry
21. An alternative treatment of non-isothermal heterogeneous transformations: Application to the crystallization of Ge 0.13Sb 0.23Se 0.64 alloy
22. Evaluation of the glass forming ability of some alloys in the Sb–As–Se system by differential scanning calorimetry
23. A study on the thermal stability of some alloys in the Sb–As–Se glassy system by differential scanning calorimetry
24. Crystallization kinetics by differential scanning calorimetry under non-isothermal regime in the case of “site saturation”
25. Theoretical study on the glass–crystal transformation and deduction of its kinetic parameters by DSC, using non-isothermal regime
26. Thermally- and photo-induced changes in the structure and optical properties of amorphous As 40S 30Se 30 films
27. Kinetic analysis on the crystallization of some alloys from the Sb–As–Se glassy system
28. Application of the single-scan calorimetric technique to the crystallization of the semiconducting Sb 0.16As 0.29Se 0.55 alloy
29. Generalization of the Avrami equation for the analysis of non-isothermal transformation kinetics. Application to the crystallization of the Cu0.20As0.30Se0.50 alloy
30. Theoretical analysis on the mechanism and transformation kinetics under non-isothermal conditions: Application to the crystallization of the semiconducting Sb 0.16As 0.36Se 0.48 alloy
31. A kinetic study on non-isothermal crystallization of the glassy alloy Sb 0.16As 0.43Se 0.41
32. Controlling the optical constants of thermally-evaporated Ge 10Sb 30S 60 chalcogenide glass films by photodoping with silver
33. Kinetic study on non-isothermal crystallization in glassy materials: application to the Sb 0.12As 0.40Se 0.48 alloy
34. Optical-constant calculation of non-uniform thickness thin films of the Ge 10As 15Se 75 chalcogenide glassy alloy in the sub-band-gap region (0.1–1.8 eV)
35. An alternative treatment of non-isothermal transformation kinetics. Application to the crystallization of the Cu 0.03Ge 0.20Te 0.77 alloy
36. A study on the thermal stability of some alloys in the Cu–Ge–Te glassy system by differential scanning calorimetry
37. Structural and electrical properties of the glassy semiconductor system Cu-As-Te: Part 1Electrical and switching aspects, and their correlation with the structure
38. ChemInform Abstract: Kinetic Study of Continuous Heating Crystallization in Cu0.08Ge0.18Te0. 74 Chalcogenide Glass.
39. On the Changes in the Structural and Optical Properties Accompanying the Athermal Photovitrification Phenomenon in As50Se50 Thin Films
40. A study of the glass forming ability of some alloys in the Ge–As–Te system by differential scanning calorimetry
41. Conductivity in ionically conducting crystals and glasses of the system Ag-S-Ge
42. Simulation of the infrared absorption bands of the amorphous alloy Sb0.20 Ge0.20 Se0.60 from the generated models by X-ray diffraction data
43. Effect of copper on the structure and other physical properties of CuAsTe chalcogenide glasses
44. Thermal analysis of AgAsSe chalcogenide glasses
45. Structure of CuAsTe glasses - Neutron diffraction and reverse Monte Carlo simulations
46. Structure of Ag–As–Se glasses with high silver content X-ray diffraction and reverse Monte Carlo simulations
47. A new study of the refractive-index dispersion of Ag-photodoped thin films of As30S70 chalcogenide glass
48. Crystallization kinetics study of Fe-B-Si metallic glasses in the theoretical frame of the JMA model
49. Calculation of the thickness and optical constants of amorphous arsenic sulphide films from their transmission spectra
50. A comparative study of different methods for calculating the set of kinetic parameters which describe the crystallization reaction of a glassy alloy
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