Utilization of carbon dioxide from industrial waste streams offers significant reductions in global carbon dioxide emissions. Solid oxide electrolysis is a highly efficient, high temperature approach that reduces polarization losses and best utilizes process heat; however, the technology is relatively unrefined for currently carbon dioxide electrolysis. In most electrochemical systems, the interface between active components are usually of great importance in determining the performance and lifetime of any energy materials application. Here we report a generic approach of interface engineering to achieve active interfaces at nanoscale by a synergistic control of materials functions and interface architectures. We show that the redox-manipul...
Co-electrolysis of CO2 and H2O using high-temperature solid oxide electrolysis cells (SOECs) into va...
Any substantial move of energy sources from fossil fuels to renewable resources requires large scale...
Electrochemical energy conversion and storage are central to developing future renewable energy syst...
K.X. would like to acknowledge the funding support form Natural Science Foundation of China (9184520...
Carbon dioxide obtained from industrial waste streams can be reduced to deliver significant reductio...
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global ...
The critical region determining the performance and lifetime of solid oxide electrochemical systems ...
Sustainable future energy scenarios require significant efficiency improvements in both electricity ...
Abstract Electrocatalytic CO2 reduction reaction (CO2RR) can store and transform the intermittent re...
K.X. acknowledges Natural Science Foundation of China (91545123) and Natural Science Foundation of F...
The application of solid oxide electrolysis cell in CO2 electroreduction is a hot research topic at ...
Interface modification is an effective and promising route for developing functional electrocatalyst...
High-temperature CO2 electrolysis in solid-oxide electrolysis cells (SOECs) could greatly assist in ...
Sustainable energy-conversion and chemical-production require catalysts with high activity, durabili...
CONSPECTUS: Developing cost-effective and high-performance electrocatalysts for renewable energy con...
Co-electrolysis of CO2 and H2O using high-temperature solid oxide electrolysis cells (SOECs) into va...
Any substantial move of energy sources from fossil fuels to renewable resources requires large scale...
Electrochemical energy conversion and storage are central to developing future renewable energy syst...
K.X. would like to acknowledge the funding support form Natural Science Foundation of China (9184520...
Carbon dioxide obtained from industrial waste streams can be reduced to deliver significant reductio...
Utilization of carbon dioxide from industrial waste streams offers significant reductions in global ...
The critical region determining the performance and lifetime of solid oxide electrochemical systems ...
Sustainable future energy scenarios require significant efficiency improvements in both electricity ...
Abstract Electrocatalytic CO2 reduction reaction (CO2RR) can store and transform the intermittent re...
K.X. acknowledges Natural Science Foundation of China (91545123) and Natural Science Foundation of F...
The application of solid oxide electrolysis cell in CO2 electroreduction is a hot research topic at ...
Interface modification is an effective and promising route for developing functional electrocatalyst...
High-temperature CO2 electrolysis in solid-oxide electrolysis cells (SOECs) could greatly assist in ...
Sustainable energy-conversion and chemical-production require catalysts with high activity, durabili...
CONSPECTUS: Developing cost-effective and high-performance electrocatalysts for renewable energy con...
Co-electrolysis of CO2 and H2O using high-temperature solid oxide electrolysis cells (SOECs) into va...
Any substantial move of energy sources from fossil fuels to renewable resources requires large scale...
Electrochemical energy conversion and storage are central to developing future renewable energy syst...