70 results on '"Rolle, Aurélie"'
Search Results
2. Use of a distribution function of relaxation times (DFRT) in impedance analysis of SOFC electrodes
3. Analysis and Application of Distribution of Relaxation Times in Solid State Ionics
4. Ca3Co4O9 + δ, a growing potential SOFC cathode material: Impact of the layer composition and thickness on the electrochemical properties
5. Desserts lactés frais
6. Impact of Increased Triple Point Boundary on the Oxygen Reduction Reaction of the Ca3co4o9+Δ/Cgo Composite Air Electrode
7. Potentiality of Ba2Co9O14 as cathode material for IT-SOFC on various electrolytes
8. Perovskite and Derivative Compounds as Mixed Ionic-Electronic Conductors
9. La 3TaO 7 derivatives with Weberite structure type: Possible electrolytes for solid oxide fuel cells and high temperature electrolysers
10. Local environment in Ba 2In 2−xW xO 5+3x/2 oxide ion conductors
11. A neutron diffraction study of the oxygen diffusion in molybdenum doped Ba 2In 2O 5
12. Characterisation of Ba2In2 − x Sn x O5 + x/2 oxide ion conductors
13. How to Evaluate the Free Sugars’ Content of a Food Product in Europe? Developing and Testing the Reproducibility of a New Method (FS02-08-19)
14. Electrochemical behavior of Ca3Co4O9+d composite electrodes prepared by a citrate route with GDC or ESB electrolytes
15. Research of innovative SOFC cathode materials
16. Oxide ion conductors for solid oxide cells
17. Oxide Ion Conduction in Oxygen Rich Doped Ba2ln2O5+δ Brownmillerite
18. Conduction ionique dans La4Ti2O10
19. Ca2MnAlO5 and La4Ti2O10 derivatives as potential SOFC’s anodes
20. Cuspidine and Brownmillerite derivatives as anode materials for SOFC
21. Indium substitution and oxygen diffusion mechanisms in Ba2In2-xMexO5+Δ (Me=Sn, V, Nb, Ta, W, Mo) oxide ion conductor
22. Ca3Co4O9+δ, a growing potential SOFC cathode material: Impact of the layer composition and thickness on the electrochemical properties
23. Doped Ba2In2O5 brownmillerite: structural, computer modelling and electrochemical studies
24. migration de l'oxygène dans les conducteurs par ions oxyde de type Ba2In2O5
25. Structural and electrochemical characterisation of new oxide ion conductors
26. Ba2In2O5-based oxide ion conductors
27. Electrolytes dérivés de Ba2In2O5 : structure, défauts, conductivité
28. Structure and oxide-ion conductivity of sodium rare-earth silicates and brownmillerite-structures oxides
29. New oxide ion conductors : structural and electrical properties
30. Conducteurs par ions oxyde de type brownmillerite : structure et propriétés électriques
31. Dopant defect effect on the conductivity in oxide
32. Water content in Ba2In2-xMexO5+d (Me=V, Nb, Ta, W, Mo) systems based on brownmillerite structure
33. Electrolytes derived from Ba2In2O5: structure, defects, conductivity
34. Caractérisation structurale et électrochimique de nouveaux électrolytes conducteurs par ions oxyde pour générateurs à oxygène et piles à combustible à oxyde solide
35. Structural and electrochemical characterisation of new oxide ion conductors for oxygen generating system and fuel cells
36. Characterization of Ba2In2-xSnxO5+x/2 oxide ion conductors
37. Nouvelles cobaltites et transfert vers l'électrochimie du solide
38. Structure of Ba2In2-xVxO5+x phases: complementarity of diffraction, Raman and absorption technique
39. Nouvelles phases dérivées de Ba2In2O5: compréhension des mécanismes de substitution et de diffusion des ions oxyde
40. A neutron diffraction study of the oxygen diffusion in molybdenum doped Ba2InO5
41. Ba2In2-xMExO5+δ oxide ion conductors: structure, conductivity, oxygen migration
42. Caractérisation du transport de l'oxygène dans des électrolytes céramiques de l'échelle atomique à l'échelle macroscopique
43. Atomic transport and defects in Ba2In2O5-based oxide ion conductors
44. Investigation of the conduction behaviour in cation-doped Ba2In2O5
45. Conducteurs ioniques par ions oxyde
46. Remarkable transition from rocksalt/perovskite layered structure to fluorite/rocksalt layered structure in rapidly cooled Ln2CuO4
47. Optimisation of the Solid Oxide Fuel Cell (SOFC) cathode material Ca3Co4O9−δ
48. Red-ox behaviour in the La0.6Sr0.4CoO3±δ-CeO2 system
49. La3TaO7 derivatives with Weberite structure type: Possible electrolytes for solid oxide fuel cells and high temperature electrolysers
50. Heterobimetallic Ba–Co aminopolycarboxylate complexes as precursors for BaCoO3-δ oxides; towards a one-stage-deposition of cobaltite films
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.