All Stories

  1. Effect of isosymmetric phase transition in MIEC perovskite on the kinetic parameters of its interaction with oxygen
  2. Cobalt-free SrFe1−xMoxO3- perovskite hollow fiber membranes for oxygen separation
  3. Effects of niobium doping on perovskite La0.5Sr0.5Fe1−xNbxO3−δ structure
  4. Hydrogen permeability of nickel capillaries: mathematical modeling and experimental verification
  5. Comparison of stationary and transient kinetic methods in determining the rate of surface exchange reaction between molecular oxygen and MIEC perovskite
  6. Study of the isobaric and isostoichiometric kinetic parameters of oxygen exchange reaction of SrFe0.98Mo0.02O3- MIEC perovskite
  7. Development and Investigation of Materials for Microtubular Hydrogen-Selective Membranes
  8. A New Type of Microtubular Oxygen Permeable Membranes Fabricated by Phase Inversion with the Use of Additive Manufacturing Technologies
  9. Modifying the La0.6Sr0.4Co0.2Fe0.8O3 – δ Cathodic Material by Ferroactive Molybdenum Cation
  10. Operando X-Ray Diffraction Analysis of a Microtubular La0.6Sr0.4Co0.2Fe0.8O3 – δ Membrane
  11. Perovskites Based on SrCo0.8Fe0.2O3 – δ (SCF) and Ba0.5Sr0.5Co0.8Fe0.2O3 – δ (BSCF) Oxides and Their Application as Membrane Materials and Electrodes for Solid Oxide Fuel Cells
  12. Development of the Crank’s diffusion model for the case of material-gas feedback regime in gas flow reactors. Advanced methodology of oxygen partial pressure relaxation for the kinetics of oxygen exchange in nonstoichiometric oxides
  13. The Brønsted–Evans–Polanyi relationship in oxygen exchange of fuel cell cathode material SrCo0.9Ta0.1O3−δ with the gas phase
  14. Перовскиты на основе SrCo 0.8 Fe 0.2 O 3 – δ (SCF) и Ba ...
  15. Development of Processing Technology for Mining and Hydromineral Lithium-Containing Raw Materials. Scientific Basis for the Production of Selective Lithium Sorbent
  16. Микротрубчатые мембраны для селективного получения кислорода и водорода
  17. Development of composite electrode materials based on nickel oxide for additive manufacturing of fuel cells
  18. Mathematical Modeling and Experimental Studies of Microtubular Solid Oxide Fuel Cells
  19. Oxygen release technique: Ba0.5Sr0.5(Co0.8Fe0.2)0.85Ta0.15O3-
  20. Ab initio molecular dynamic study of structure and atomic motions in SrCoO3-x and SrCo0.875Mo0.125O3-x
  21. A study of the influence of Li-containing additives in microtubular SOFC components based on Gd-doped ceria on the effectiveness of the co-firing method
  22. Direct AC/DC Heating of Oxygen Transport Membranes
  23. The modeling of oxygen transport in MIEC oxide hollow fiber membranes
  24. Brønsted-Evans-Polanyi relationship in oxygen exchange of non-stoichiometric oxides with gas phase
  25. Compact solid oxide fuel cells and catalytic reformers based on microtubular membranes
  26. In situ high-temperature X-Ray diffraction of hollow fiber membranes under operating conditions
  27. Using Doping to Modify the Properties of SrFeO3 and SrCoO3 Oxides: DFT Calculations of the Electronic Structure
  28. Mixed Ionic-Electronic Conducting Perovskites as Nanostructured Ferroelastics
  29. The influence of A- and B-cation substitution on electronic structure of SrFeO3 and SrCoO3
  30. Oxygen evolution from nonstoichiometric BSCF perovskite
  31. Novel oxygen partial pressure relaxation technique
  32. Improvement of Performance of Oxygen-Conducting Membranes by Electric Heating
  33. Nonstoichiometric oxides as a continuous homologous series
  34. Direct AC heating of oxygen transport membranes
  35. Influence of Mo-doping on structure and oxygen permeation properties of SrCo 0.8−x Fe 0.2 Mo x O 3-δ perovskite membranes for oxygen separation
  36. Mixed conducting molybdenum doped BSCF materials
  37. New approaches for enhancement of oxygen fluxes on hollow fiber membranes
  38. Study of the oxygen exchange kinetics in the nonstoichiometric oxide SrFeO3–δ under isostoichiometric conditions using the oxygen partial pressure relaxation technique
  39. Modification of mixed conducting Ba0.5Sr0.5Co0.8Fe0.2O3–δ by partial substitution of cobalt with tungsten
  40. Relation between oxygen stoichiometry and thermodynamic properties and the electronic structure of nonstoichiometric perovskite La0.6Sr0.4CoO3−δ
  41. Structural Features of New Cathode Ba0.5Sr0.5Co0.8 - xFe0.2MoxO3 - d Materials for Medium-Temperature Solid Oxide Fuel Elements
  42. Study of the oxygen permeability of ceramic membranes based on nonstoichiometric perovskites SrCo0.8–x Fe0.2W x O3–δ
  43. Oxygen permeability of hollow fiber membranes of composition Ba0.5Sr0.5Co0.78W0.02Fe0.2O3–δ
  44. Study of the structural features of nonstoichiometric SrCo0.8–x Fe0.2W x O3–δ (0 < x < 0.1) perovskites
  45. Effect of B-site tungsten doping on structure and oxygen permeation properties of SrCo0.8Fe0.2O3−δ perovskite membranes
  46. Ferroelasticity of SrCo0.8Fe0.2O3–δperovskite-related oxide with mixed ion–electron conductivity
  47. Phase transitions and microstructure of ferroelastic MIEC oxide SrCo0.8Fe0.2O2.5 doped with highly charged Nb/Ta(v) cations
  48. In situ high-temperature diffraction study of the perovskite-brownmillerite phase transition in SrCo0.8Fe0.2O2.5 in isostoichiometric mode
  49. Improvement of Ba0.5Sr0.5Co0.8Fe0.2O3−δ functional properties by partial substitution of cobalt with tungsten
  50. Domain structure of ferroelastic SrCo0.8Fe0.2O2.5 with mixed oxygen-electronic conductivity
  51. Oxygen permeability and structural features of SrFe1−xWxO3−δ membranes
  52. Oxygen Release from Grossly Nonstoichiometric SrCo0.8Fe0.2O3−δPerovskite in Isostoichiometric Mode
  53. Oxygen release technique as a method for the determination of “δ–pO2–T” diagrams for MIEC oxides
  54. Oxygen release from SrCo0.8Fe0.2O3 − δ
  55. High-temperature oxygen nonstoichiometry determination in mixed ionic-electronic conducting oxides
  56. Investigation of the microstructural features of SrCo0.8Fe0.2O3−δ perovskite
  57. Structure of Sr1 − x Pb x FeO3 − δ (0 < x < 0.5) perovskite-like materials
  58. Robert Schöllhorn: a tribute on the occasion of his 75th birthday
  59. Nanostructured Perovskites for the Fabrication of Thin Ceramic Membranes and Related Phenomena
  60. Twins in SrFe0.95Mo0.05O2.58: Debye simulation of XRD patterns
  61. ChemInform Abstract: Re6S12, a New Binary Rhenium Cluster Chalcogenide.
  62. High-temperature study of SrFe1 − x Mo x O3−z perovskites
  63. Study of high-temperature oxygen permeability in Sr1 − x La x Co0.8 − y Nb y Fe0.2O3 − z perovskites
  64. ChemInform Abstract: Room Temperature Electrochemical Redox Reactions of the Defect Perovskite SrFeO2.5+x.
  65. Oxygen transport properties of nanostructured SrFe1 − x Mo x O2.5 + 3/2x (0 < x < 0.1) perovskites
  66. Structural features, nonstoichiometry and high-temperature transport in SrFe1−xMoxO3−δ
  67. Structural stability and electrical transport in SrFe1−xMoxO3−δ
  68. Synthesis and study of the thermal stability of SrFe1−xM xO3−z (M=Mo, W) perovskites
  69. Oxygen nonstoichiometry and high-temperature transport in SrFe1−xW xO3−δ
  70. Synthesis and properties of SrFe1 − x M x O3 − z (M = Mo, W) perovskites
  71. Synthesis and properties of Sr1 − x M x Co0.8 − y Al y Fe0.2O3 − z perovskite-like oxides
  72. Room-temperature magnetism in chemically oxygenated conducting oxide Sr2FeCoO6
  73. Application of synchrotron radiation for the study of nonstoichiometric oxygen-permeable perovskites by means of X-ray diffraction
  74. Nanostructuring in composites and grossly nonstoichiometric or heavily doped oxides
  75. Oxygen diffusion in nanostructured perovskites
  76. EXAFS Study of Nb Doped SrCoFeO3x Perovskites
  77. A Comparative Study of the Activity of Oxide Catalysts in the Oxidation of Methane and 1,1-Dimethylhydrazine
  78. Electrochemical topotactic oxidation of nonstoichiometric perovskites at ambient temperature
  79. Reactivity of the perovskite system Ca1– x Sr x FeO2.5 in topotactic electrochemical oxidation at ambient temperature
  80. Model for anomalous transport of oxygen in nonstoichiometric perovskites Analytical and numerical solutions
  81. Aluminium hydroxide as selective sorbent of lithium salts from brines and technical solutions
  82. Room Temperature Electrochemical Redox Reactions of the Defect Perovskite SrFeO 2.5+ x
  83. Model for anomalous transport of oxygen in nonstoichiometric perovskites1. General formulation of the problem
  84. Room temperature topotactic oxidation of lanthanum cobalt oxide La2CoO4.0
  85. Topotactic Electrochemical Redox Reactions of the Defect Perovskite SrCoO2.5+x
  86. Re6S12, a new binary rhenium cluster chalcogenide
  87. The reaction of YBa2Cu3O6 with iodine
  88. The reaction of YBa2Cu3O6 with iodine
  89. Electron microscopic study of the interaction of YBa2Cu3O6 with iodine
  90. Mechanism of formation of halogen-containing high-temperature superconductors based on YBa2Cu3O7−x
  91. Intercalation of halogens into tetragonal YBa2Cu3O7−x
  92. INTERCALATION OF HALOGENS INTO YBa2Cu3C7−x
  93. Influence of stresses arising on intercalation of lithium salts into gibbsite on the reaction progress
  94. Reaction of crystalline aluminium hydroxide with aqueous solutions of lithium salts