The solid oxide electrolysis cell (SOEC) technology has a huge potential for future mass production of hydrogen, mainly due to its high electrical-to-chemical energy conversion efficiency. However, the durability and the performance of SOEC devices are inferior to that of other competitive electrolysis technologies inhibiting the commercialization of SOECs. Despite the fact that Ni-based cermets are currently the most widely used cathode materials for SOEC, change of the nickel oxidation state has been accused as a major issue limiting the performance of these devices. In this work we provide operando experimental evidence of the active surface oxidation state and composition of nickel/doped-ceria cermets under water electrolysis conditions...
This study investigates the stability of nickel-impregnated scandia-stabilize zirconia composite ele...
International audienceThe present study is focused on alternative structured oxygen electrodes for s...
Les matériaux à base de Ni et zircone stabilisée à l’oxyde d’yttrium (YSZ) ou d'oxyde de cérium dopé...
The solid oxide electrolysis cell (SOEC) technology has a huge potential for future mass production ...
Due to their fuel flexibility and high efficiency, solid oxide cells are a promising technology for ...
International audienceDue to their fuel flexibility and high efficiency, solid oxide cells are aprom...
Les cellules d'électrolyse à oxyde solide (SOEC) sont des dispositifs électrochimiques à haute tempé...
Nickel/doped‐ceria composites are promising electrocatalysts for solid‐oxide fuel and electrolysis c...
Solid oxide cells (SOCs) are promising energy conversion devices in which the chemical energy of fue...
YSZ-electrolyte supported solid oxide electrolyzer cells (SOECs) using LSM-YSZ oxygen electrode but ...
One major challenge that has to be solved to enable a market entry of solid oxide electrolysis cells...
International audienceThe oxidation of porous Ni-yttria-stabilized zirconia (YSZ) and Ni-gadolinia-d...
High-temperature electrolysis using solid oxide electrolysis cells (SOECs) is an innovative technolo...
Ni-yttria-stabilized zirconia (YSZ) and Ni-gadolinia-doped ceria (GDC) are the SoA cathode electrode...
This study investigates the stability of nickel-impregnated scandia-stabilize zirconia composite ele...
International audienceThe present study is focused on alternative structured oxygen electrodes for s...
Les matériaux à base de Ni et zircone stabilisée à l’oxyde d’yttrium (YSZ) ou d'oxyde de cérium dopé...
The solid oxide electrolysis cell (SOEC) technology has a huge potential for future mass production ...
Due to their fuel flexibility and high efficiency, solid oxide cells are a promising technology for ...
International audienceDue to their fuel flexibility and high efficiency, solid oxide cells are aprom...
Les cellules d'électrolyse à oxyde solide (SOEC) sont des dispositifs électrochimiques à haute tempé...
Nickel/doped‐ceria composites are promising electrocatalysts for solid‐oxide fuel and electrolysis c...
Solid oxide cells (SOCs) are promising energy conversion devices in which the chemical energy of fue...
YSZ-electrolyte supported solid oxide electrolyzer cells (SOECs) using LSM-YSZ oxygen electrode but ...
One major challenge that has to be solved to enable a market entry of solid oxide electrolysis cells...
International audienceThe oxidation of porous Ni-yttria-stabilized zirconia (YSZ) and Ni-gadolinia-d...
High-temperature electrolysis using solid oxide electrolysis cells (SOECs) is an innovative technolo...
Ni-yttria-stabilized zirconia (YSZ) and Ni-gadolinia-doped ceria (GDC) are the SoA cathode electrode...
This study investigates the stability of nickel-impregnated scandia-stabilize zirconia composite ele...
International audienceThe present study is focused on alternative structured oxygen electrodes for s...
Les matériaux à base de Ni et zircone stabilisée à l’oxyde d’yttrium (YSZ) ou d'oxyde de cérium dopé...