La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl'utilisation d'un électrolyte conducteur protonique peut représenter une alternative intéressanteà la pile SOFC qui présente actuellement le meilleur rendement. Cependant, la surtension à lacathode reste élevée et ce travail est dédié à la compréhension du mécanisme de réductionl'oxygène à cette électrode.Différents matériaux conducteurs mixtes O2- / e- de structures dérivées de la perovskite ABO3,tels que les doubles perovskites LnBaM2O5+d (Ln = Pr, Nd et Gd et M = Co et Fe) ainsi que lesphases de Ruddlesden-Popper A2MO4+d (Ln = Pr et Sr et M = Ni), ont été étudiés. Leur niveaude conductivité électronique ainsi que leur non-stoechiométrie en oxygène ont d'a...
Sr0.7R0.3CoO3-δ (R = Tb and Er) tetragonal perovskites have been prepared and evaluated as mixed ion...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
Four mixed ionic-electronic conducting (MIEC) perovskite-related oxides were studied as potential H+...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl'utilisation d'u...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl’utilisation d’u...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl’utilisation d’u...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl utilisation d u...
The H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) based on a protonic conductingelectrolyte ca...
The H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) based on a protonic conductingelectrolyte ca...
L'augmentation du pouvoir électrocatalytique d'une pile à combustible fonctionnant à haute températu...
L'augmentation du pouvoir électrocatalytique d'une pile à combustible fonctionnant à haute températu...
With the aim to increase the electrocatalytic power of the high temperature fuel cells (SOFC, Solid ...
With the aim to increase the electrocatalytic power of the high temperature fuel cells (SOFC, Solid ...
Solid state ionic devices based on high-temperature proton conductors can be used for various applic...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
Sr0.7R0.3CoO3-δ (R = Tb and Er) tetragonal perovskites have been prepared and evaluated as mixed ion...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
Four mixed ionic-electronic conducting (MIEC) perovskite-related oxides were studied as potential H+...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl'utilisation d'u...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl’utilisation d’u...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl’utilisation d’u...
La pile à combustible H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) basée surl utilisation d u...
The H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) based on a protonic conductingelectrolyte ca...
The H+-SOFC (Protonic Conducting Solid Oxide Fuel Cell) based on a protonic conductingelectrolyte ca...
L'augmentation du pouvoir électrocatalytique d'une pile à combustible fonctionnant à haute températu...
L'augmentation du pouvoir électrocatalytique d'une pile à combustible fonctionnant à haute températu...
With the aim to increase the electrocatalytic power of the high temperature fuel cells (SOFC, Solid ...
With the aim to increase the electrocatalytic power of the high temperature fuel cells (SOFC, Solid ...
Solid state ionic devices based on high-temperature proton conductors can be used for various applic...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
Sr0.7R0.3CoO3-δ (R = Tb and Er) tetragonal perovskites have been prepared and evaluated as mixed ion...
Proton-conducting ceramics based on perovskite-type oxides have been significantly applied in a wide...
Four mixed ionic-electronic conducting (MIEC) perovskite-related oxides were studied as potential H+...