The final task of the whole research project is the design of new ceramic materials for protonic conduction in the range of temperature 350-750 \ub0C. To this aim, it was planned to deepen the information on the systems obtained by doping the Ce site in the BaCeO3 perovskite matrices. In these compounds, cerium has been substituted by trivalent elements (Y, In), thus creating \u2013 to fulfill charge neutrality \u2013 oxygen vacancies that could be filled by hydroxyls groups. In this way protons have been introduced in the structure. These materials are currently investigated by both experimental and computational approaches to integrate framework structure and proton transport phenomena analyses. Due to the characteristics of the studied m...
In the present work the structural and electrical properties of samarium-doped barium cerate perovsk...
Rare-earth-doped BaCeO3 and BaZrO3 electrolytes with perovskite structure have been studied extensiv...
When perovskite-structured BaCeO3 is doped with M3+ ions (e.g., Nd3+, Gd3+, Yb3+) that substitute on...
The final task of the whole research project is the design of new ceramic materials for protonic con...
Quantum chemical calculations have been carried, out to simulate Y-doped BaCeO3 derivatives. Hartree...
Geometry calculations were performed on pure BaCeO3 fragments and on Y- and In-doped derivatives. HF...
In solid oxide protonic conductors, proton diffusion is mainly driven by phonon-assisted dynamics, f...
Rare earth (or yttrium) doped BaCeO₃ has been widely investigated as a proton conducting material. U...
Solid ceramic proton conductors are a crucial component for hydrogen-based energy devices, such as s...
Certain acceptor-doped perovskite-type oxides show significant promise for deployment into a number ...
Perovskites have attracted growing interest in recent eras due to their unique properties and potent...
Proton conducting oxides can be beneficial as electrolyte materials in devices such as fuel cells, h...
A complete solid solution forms between the perovskite proton conductor BaZr0.7Ce0.2Y0.1O3-δ (BZCY72...
International audienceHydration and oxidation of gadolinium-doped barium cerate, a system with highl...
Oxides with proton conductivity have a great potential for applications in environmental energy tech...
In the present work the structural and electrical properties of samarium-doped barium cerate perovsk...
Rare-earth-doped BaCeO3 and BaZrO3 electrolytes with perovskite structure have been studied extensiv...
When perovskite-structured BaCeO3 is doped with M3+ ions (e.g., Nd3+, Gd3+, Yb3+) that substitute on...
The final task of the whole research project is the design of new ceramic materials for protonic con...
Quantum chemical calculations have been carried, out to simulate Y-doped BaCeO3 derivatives. Hartree...
Geometry calculations were performed on pure BaCeO3 fragments and on Y- and In-doped derivatives. HF...
In solid oxide protonic conductors, proton diffusion is mainly driven by phonon-assisted dynamics, f...
Rare earth (or yttrium) doped BaCeO₃ has been widely investigated as a proton conducting material. U...
Solid ceramic proton conductors are a crucial component for hydrogen-based energy devices, such as s...
Certain acceptor-doped perovskite-type oxides show significant promise for deployment into a number ...
Perovskites have attracted growing interest in recent eras due to their unique properties and potent...
Proton conducting oxides can be beneficial as electrolyte materials in devices such as fuel cells, h...
A complete solid solution forms between the perovskite proton conductor BaZr0.7Ce0.2Y0.1O3-δ (BZCY72...
International audienceHydration and oxidation of gadolinium-doped barium cerate, a system with highl...
Oxides with proton conductivity have a great potential for applications in environmental energy tech...
In the present work the structural and electrical properties of samarium-doped barium cerate perovsk...
Rare-earth-doped BaCeO3 and BaZrO3 electrolytes with perovskite structure have been studied extensiv...
When perovskite-structured BaCeO3 is doped with M3+ ions (e.g., Nd3+, Gd3+, Yb3+) that substitute on...