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4. Precursor of Pr2NiO4+δ as a highly effective catalyst for the simultaneous promotion of oxygen reduction and hydrogen oxidation reactions in solid oxide electrochemical devices

5. On a variation of the kinetics of hydrogen oxidation on Ni–BaCe(Y,Gd)O3 anode for proton ceramic fuel cells

6. Design of materials for solid oxide fuel cells, permselective membranes, and catalysts for biofuel transformation into syngas and hydrogen based on fundamental studies of their real structure, transport properties, and surface reactivity

9. Kinetics of CO oxidation and redox cycling of Sr2Fe1.5Mo0.5O6-δ electrode for symmetrical solid state electrochemical devices

10. Advanced electrochemical properties of Pr0.9Y0.1BaCo1.8Ni0.2O6– – Ce0.8Sm0.2O1.9 composite as cathode material for IT–SOFCs

11. Electrochemical performance of Ln2NiO4+δ (Ln – La, Nd, Pr) And Sr2Fe1.5Mo0.5O6−δ oxide electrodes in contact with apatite-type La10(SiO6)4O3 electrolyte

12. Influence of modification of chemical solution deposition on morphology and conductivity of CaZr0.9Y0.1O3- films

14. Understanding the oxygen reduction kinetics on Sr2-xFe1.5Mo0.5O6-δ: Influence of strontium deficiency and correlation with the oxygen isotopic exchange data

15. H/D isotopic exchange and electrochemical kinetics of hydrogen oxidation on Ni-cermets with oxygen-ionic and protonic electrolytes

16. Functional properties and electrochemical performance of Ca-doped Sr2-xCaxFe1.5Mo0.5O6-δ as anode for solid oxide fuel cells

17. Hydrogen oxidation kinetics at Ni – Zr0.9Sc0.1O1.95 anode: Influence of the difference of potential in the dense part of the double electric layer

18. Influence of Pr6O11 on oxygen electroreduction kinetics and electrochemical performance of Sr2Fe1.5Mo0.5O6-δ based cathode

19. Functional properties and electrochemical performance of dual-phase Pr0.9Y0.1BaCo2O6−δ–Ce0.8Sm0.2O1.9 composite cathodes

20. Hydrogen oxidation kinetics on a redox stable electrode for reversible solid-state electrochemical devices: The critical influence of hydrogen dissociation on the electrode surface

21. The physical properties and electrochemical performance of Ca-doped Sr2MgMoO6-δ as perspective anode for solid oxide fuel cells

22. The electrochemical behavior of the promising Sr2Fe1.5Mo0.5O6–δ + Ce0.8Sm0.2O1.9–δ anode for the intermediate temperature solid oxide fuel cells

23. Characterisation of Ni-cermet degradation phenomena II. Relationship between connectivity and resistivity

24. An approach to the analysis of the impedance spectra of solid oxide fuel cell using the DRT technique

25. Electrochemical performance and superior CO2 endurance of PrBaCo2O6–δ – PrBaCoTaO6 composite cathode for IT-SOFCs

26. Long-term tests of Ni–Zr0.9Sc0.1O1.95 anode impregnated with CeO2 in H2 + H2O gas mixtures

27. Rate determining steps of fuel oxidation over CeO2 impregnated Ni-YSZ in H2+ H2O + CO + CO2 ambient

28. Performance and redox stability of a double–layer Sr2Fe1.5Mo0.5O6-δ – based electrode for solid state electrochemical application

29. On a variation of the Tikhonov regularization method for calculating the distribution function of relaxation times in impedance spectroscopy

30. LaScO3-based electrolyte for protonic ceramic fuel cells: Influence of sintering additives on the transport properties and electrochemical performance

31. Application of Promising Electrode Materials in Contact with a Thin-Layer ZrO2-Based Supporting Electrolyte for Solid Oxide Fuel Cells

32. Rate-Determining Steps of Oxygen Surface Exchange Kinetics on Sr2Fe1.5Mo0.5O6−δ

33. Complementary effect of ceria on the hydrogen oxidation kinetics on Ni - Ce0.8Sm0.2O2-δ anode

34. Electrical and Electrochemical Properties of La2NiO4+δ-Based Cathodes in Contact with Ce0.8Sm0.2O2-δ Electrolyte

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