The emergence of synergistic effects in multicomponent catalysts can result in breakthrough advances in the electrochemical reduction of carbon dioxide. Copper-indium catalysts show high performance toward carbon monoxide production but also extensive structural and compositional changes under operation. The origin of the synergistic effect and the nature of the active phase are not well understood, thus hindering optimization efforts. Here we develop a platform that sheds light into these aspects, based on microfabricated model electrodes that are evaluated under conventional experimental conditions. The relationship among the electrode performance, geometry and composition associates the high carbon monoxide evolution activity of copper-i...
The electrochemical reduction of carbon dioxide using renewably generated electricity offers a poten...
Among many alternatives, CO2 electroreduction (CO2ER) is an emerging technology to alleviate its lev...
Understanding and managing the local microenvironments in carbon dioxide reduction catalysts is cruc...
The emergence of synergistic effects in multicomponent catalysts can result in breakthrough advances...
The increasing atmospheric carbon dioxide (CO2) level is calling for more efficient CO2 fixation sys...
Avoiding the most serious effects of climate change is one of the greatest technical and socio-polit...
DoctorConversion of carbon dioxide (CO2) to fuel can mitigate the global climate crisis and the depl...
Copper has received significant attention for decades as electrode material for the electrochemical ...
The efficient electrochemical conversion of CO2 to fuels or stock chemicals with high-energy density...
The electrochemical conversion of CO2 holds promise to relieve the excess CO2 emission and store ren...
Cu–In metallic hybrid is a promising non-noble catalyst for selective electrochemical CO2 reduction ...
Rapid industrialization and use of carbon based fuels has caused a drastic increase in the atmospher...
Sustainable development and climate change is considered to be one of the top challenges of humanity...
Copper is one of the most promising catalysts for the CO2 reduction reaction (CO2RR) due to its uniq...
Excess CO2 in the atmosphere has been a troublesome problem for humanity for the last few decades no...
The electrochemical reduction of carbon dioxide using renewably generated electricity offers a poten...
Among many alternatives, CO2 electroreduction (CO2ER) is an emerging technology to alleviate its lev...
Understanding and managing the local microenvironments in carbon dioxide reduction catalysts is cruc...
The emergence of synergistic effects in multicomponent catalysts can result in breakthrough advances...
The increasing atmospheric carbon dioxide (CO2) level is calling for more efficient CO2 fixation sys...
Avoiding the most serious effects of climate change is one of the greatest technical and socio-polit...
DoctorConversion of carbon dioxide (CO2) to fuel can mitigate the global climate crisis and the depl...
Copper has received significant attention for decades as electrode material for the electrochemical ...
The efficient electrochemical conversion of CO2 to fuels or stock chemicals with high-energy density...
The electrochemical conversion of CO2 holds promise to relieve the excess CO2 emission and store ren...
Cu–In metallic hybrid is a promising non-noble catalyst for selective electrochemical CO2 reduction ...
Rapid industrialization and use of carbon based fuels has caused a drastic increase in the atmospher...
Sustainable development and climate change is considered to be one of the top challenges of humanity...
Copper is one of the most promising catalysts for the CO2 reduction reaction (CO2RR) due to its uniq...
Excess CO2 in the atmosphere has been a troublesome problem for humanity for the last few decades no...
The electrochemical reduction of carbon dioxide using renewably generated electricity offers a poten...
Among many alternatives, CO2 electroreduction (CO2ER) is an emerging technology to alleviate its lev...
Understanding and managing the local microenvironments in carbon dioxide reduction catalysts is cruc...