In this work, porous complex and metal-free cathodes based on a (La0.6Sr0.4) (Cr0.5Mn0.5) O3 (LSCM) screen-printed backbone infiltrated with Ce0.9Gd0.1O2 (GDC) were fabricated for solid oxide electrolyzer cells. GDC infiltration has been optimized by structural and microstructural investigation and tested by electrochemical measurements in CO/CO2 mixtures. Infiltrated electrodes with a non-aqueous GDC solution showed the best electro-catalytic activity towards CO2 reduction, exhibiting a much lower polarization resistance, i.e., Rpol = 0.3 Wcm2 at 900 C. The electrochemical performance of LSCM/GDCE in terms of Rpol is comparable to the best-performing Ni-YSZ cathode in the same operating conditions (Rpol = 0.23 Wcm2
In this work, the electrocatalytic properties of novel cathodes prepared by infiltration of NdBa0.9C...
The authors thank the University of St Andrews and RCUK Energy Supergen programme on H-Delivery and ...
The effort on electrochemical reduction of CO2 to useful chemicals using the renewable energy to dri...
In this work, porous complex and metal-free cathodes based on a (La0.6Sr0.4) (Cr0.5Mn0.5) O3 (LSCM)...
Extensive efforts have been made to find new fuel electrode materials for solid oxide cells with hig...
This work was funded by Overseas Research Students Awards Scheme (ORSAS), University of St Andrews a...
Solid oxide electrolysis cell (SOEC) can electrochemically convert CO2 to CO at the gas-solid interf...
This work was supported by the Technology Innovation Program (grant no. 20182010600400) funded by th...
The electrolysis of CO2 has been examined in a solid oxide electrolyzer (SOE) using a ceramic electr...
The CO2 electrochemical reduction via SOEC was studied for a range of cathode materials in various o...
The electrolysis of CO2 has been examined in a solid oxide electrolyzer (SOE) using a ceramic electr...
The electrochemical reduction of CO2 using a highly efficient solid oxide electrolyzer could be cons...
The electrolysis of CO2 has been examined in a solid oxide electrolyzer (SOE) using a ceramic electr...
Cathodes prepared by infiltration of La0.6Sr0.4CoO3-delta (LSC40) into a porous Ce0.9Gd0.1O1.95 (CGO...
Three different cathode materials for CO2 reduction by high temperature solid oxide electrolysis cel...
In this work, the electrocatalytic properties of novel cathodes prepared by infiltration of NdBa0.9C...
The authors thank the University of St Andrews and RCUK Energy Supergen programme on H-Delivery and ...
The effort on electrochemical reduction of CO2 to useful chemicals using the renewable energy to dri...
In this work, porous complex and metal-free cathodes based on a (La0.6Sr0.4) (Cr0.5Mn0.5) O3 (LSCM)...
Extensive efforts have been made to find new fuel electrode materials for solid oxide cells with hig...
This work was funded by Overseas Research Students Awards Scheme (ORSAS), University of St Andrews a...
Solid oxide electrolysis cell (SOEC) can electrochemically convert CO2 to CO at the gas-solid interf...
This work was supported by the Technology Innovation Program (grant no. 20182010600400) funded by th...
The electrolysis of CO2 has been examined in a solid oxide electrolyzer (SOE) using a ceramic electr...
The CO2 electrochemical reduction via SOEC was studied for a range of cathode materials in various o...
The electrolysis of CO2 has been examined in a solid oxide electrolyzer (SOE) using a ceramic electr...
The electrochemical reduction of CO2 using a highly efficient solid oxide electrolyzer could be cons...
The electrolysis of CO2 has been examined in a solid oxide electrolyzer (SOE) using a ceramic electr...
Cathodes prepared by infiltration of La0.6Sr0.4CoO3-delta (LSC40) into a porous Ce0.9Gd0.1O1.95 (CGO...
Three different cathode materials for CO2 reduction by high temperature solid oxide electrolysis cel...
In this work, the electrocatalytic properties of novel cathodes prepared by infiltration of NdBa0.9C...
The authors thank the University of St Andrews and RCUK Energy Supergen programme on H-Delivery and ...
The effort on electrochemical reduction of CO2 to useful chemicals using the renewable energy to dri...