Ammonia exhibits interesting features as fuel to feed Solid Oxide Fuel Cell. Herein, Ni and La co-doped strontium titanate was synthetized using wet chemistry route. Ni nanoparticles emerged via exsolution in reducing environment to decorate the surface. X-Ray Diffraction measurements exhibits perovskite structure was also preserved after the exsolution, as expected. H2 – Temperature Programmed Reduction highlights the great resistance of titanates in anode operation condition. Ammonia conversion in nitrogen and hydrogen were investigated by catalytic tests. It begins to decompose at 560°C and the full yield was achieved at 720°C. Electrochemical measurements were recorded at 800°C using 10% of ammonia in Ar. They were analysed though the m...
In this work, we focus on investigating the titanate perovskites with exsolved Ni-Co alloy nanocatal...
International audienceIn this study, the synthesis of La0.75Sr0.25Cr0.4Mn0.5Ru0.1O3-delta a (LSC0.4M...
International audienceExsolution is a promising technique to design metal nanoparticles for electroc...
Hydrogen represents the most conventional fuel to feed Solid Oxide Fuel Cells (SOFCs) for green ener...
International audienceA new La0.5Sr0.5Ti0.75Ni0.25O3 (LSTN25) titanate was proposed as a hydrogen el...
Fuel cells are a technology that can potentially revolutionise the means by which we store and conv...
DoctorThe generation of energy by clean, efficient and environmental-friendly means is now one of th...
B1403To increase the durability of SOFC stacks, robust anodes with high catalytic performance and re...
Electrically conducting oxides have been proposed as alternatives to Ni-based cermet anodes for soli...
Exsolving B-site nanomaterials from A-site deficient perovskite lattice has been attracting great at...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
Perovskite oxides have potential for use as alternative anode materials in solid oxide fuel cells (S...
B1104La-doped strontium titanate (LST) materials are widely recognized among other alternative anode...
Modified strontium titanates have received much attention recently for their potential as anode mate...
In this work, we focus on investigating the titanate perovskites with exsolved Ni-Co alloy nanocatal...
International audienceIn this study, the synthesis of La0.75Sr0.25Cr0.4Mn0.5Ru0.1O3-delta a (LSC0.4M...
International audienceExsolution is a promising technique to design metal nanoparticles for electroc...
Hydrogen represents the most conventional fuel to feed Solid Oxide Fuel Cells (SOFCs) for green ener...
International audienceA new La0.5Sr0.5Ti0.75Ni0.25O3 (LSTN25) titanate was proposed as a hydrogen el...
Fuel cells are a technology that can potentially revolutionise the means by which we store and conv...
DoctorThe generation of energy by clean, efficient and environmental-friendly means is now one of th...
B1403To increase the durability of SOFC stacks, robust anodes with high catalytic performance and re...
Electrically conducting oxides have been proposed as alternatives to Ni-based cermet anodes for soli...
Exsolving B-site nanomaterials from A-site deficient perovskite lattice has been attracting great at...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
Perovskite oxides have potential for use as alternative anode materials in solid oxide fuel cells (S...
B1104La-doped strontium titanate (LST) materials are widely recognized among other alternative anode...
Modified strontium titanates have received much attention recently for their potential as anode mate...
In this work, we focus on investigating the titanate perovskites with exsolved Ni-Co alloy nanocatal...
International audienceIn this study, the synthesis of La0.75Sr0.25Cr0.4Mn0.5Ru0.1O3-delta a (LSC0.4M...
International audienceExsolution is a promising technique to design metal nanoparticles for electroc...