An atomically dispersed structure is attractive for electrochemically converting carbon dioxide (CO2) to fuels and feedstock due to its unique properties and activity. Most single-atom electrocatalysts are reported to reduce CO2 to carbon monoxide (CO). Herein, we develop atomically dispersed indium (In) on a nitrogen-doped carbon skeleton (In-N-C) as an efficient catalyst to produce formic acid/formate in aqueous media, reaching a turnover frequency as high as 26771 h(-1) at -0.99 V relative to a reversible hydrogen electrode (RHE). Electrochemical measurements show that trace amounts of In loaded on the carbon matrix significantly improve the electrocatalytic behavior for the CO2 reduction reaction, outperforming conventional metallic In ...
International audienceThe electrocatalytic reduction of carbon dioxide to formic acid on metallic el...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
An atomically dispersed structure is attractive for electrochemically converting carbon dioxide (CO2...
Electrochemical reduction of CO$_2$ to chemicals and fuels is an interesting and attractive way to m...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
The electrochemical conversion of CO2 to high-value molecules is an elegant alternative for combinin...
Indium‐based materials can selectively reduce CO2 to formate, but their activities still fall short ...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
Electrochemical CO2 reduction to fuels and chemicals could improve industrial sustainability,as the ...
Electrochemical CO2 reduction to fuels and chemicals could improve industrial sustainability,as the ...
In this study, a simple and scalable method to obtain heterogeneous indium nanoparticles and carbon...
International audienceThe electrocatalytic reduction of carbon dioxide to formic acid on metallic el...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
An atomically dispersed structure is attractive for electrochemically converting carbon dioxide (CO2...
Electrochemical reduction of CO$_2$ to chemicals and fuels is an interesting and attractive way to m...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
Selective electrocatalytic reduction of CO2 to formate has received increasing interest for CO2 conv...
The electrochemical conversion of CO2 to high-value molecules is an elegant alternative for combinin...
Indium‐based materials can selectively reduce CO2 to formate, but their activities still fall short ...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
Electrochemical CO2 reduction to fuels and chemicals could improve industrial sustainability,as the ...
Electrochemical CO2 reduction to fuels and chemicals could improve industrial sustainability,as the ...
In this study, a simple and scalable method to obtain heterogeneous indium nanoparticles and carbon...
International audienceThe electrocatalytic reduction of carbon dioxide to formic acid on metallic el...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...
Electrocatalytic conversion of CO2 to fuels and chemicals can help mitigate climate change by reuse ...