Direct electrosynthesis of formate through CO2 electroreduction (denoted CO2RR) is currently attracting great attention because formate is a highly valuable commodity chemical that is already used in a wide range of applications (e.g., formic acid fuel cells, tanning, rubber production, preservatives, and antibacterial agents). Herein, we demonstrate highly selective production of formate through CO2RR from a CO2-saturated aqueous bicarbonate solution using a porous In55Cu45 alloy as the electrocatalyst. This novel high-surface-area material was produced by means of an electrodeposition process utilizing the dynamic hydrogen bubble template approach. Faradaic efficiencies (FEs) of formate production (FEformate) never fell below 90% within a...
Abstract The flow‐cell design offers prospect for transition to commercial‐relevant high current den...
Facile interconversion between CO<sub>2</sub> and formate/formic acid (FA) is of broad interest in e...
International audienceWe report electrolyte engineering strategy for CO 2 reduction into formate wit...
The concentration of atmospheric CO2 has increased alarmingly in the last few decades, triggering th...
Mesoporous Cu foams formed by a template-assisted electrodeposition process have been identified as ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Electrochemical CO2 reduction (CO2RR) is an environmentally friendly approach to transform greenhous...
Production of liquid fuels by electrochemical CO2 reduction (eCO2R) is an attractive option for ener...
Carbon dioxide conversion into useful products has been gaining considerable attention as a global-w...
Electrochemical reduction of carbon dioxide (CO2) into value-added chemicals have been one of promis...
Electrocatalytic reduction of CO2 has been taken into consideration as a fascinating option to store...
Currently, low catalytic activity, selectivity and stability are the biggest challenges which restri...
Abstract The flow‐cell design offers prospect for transition to commercial‐relevant high current den...
Facile interconversion between CO<sub>2</sub> and formate/formic acid (FA) is of broad interest in e...
International audienceWe report electrolyte engineering strategy for CO 2 reduction into formate wit...
The concentration of atmospheric CO2 has increased alarmingly in the last few decades, triggering th...
Mesoporous Cu foams formed by a template-assisted electrodeposition process have been identified as ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Carbon dioxide (CO2) is a kinetically and thermodynamically stable molecule. It is easily formed by ...
Electrochemical CO2 reduction (CO2RR) is an environmentally friendly approach to transform greenhous...
Production of liquid fuels by electrochemical CO2 reduction (eCO2R) is an attractive option for ener...
Carbon dioxide conversion into useful products has been gaining considerable attention as a global-w...
Electrochemical reduction of carbon dioxide (CO2) into value-added chemicals have been one of promis...
Electrocatalytic reduction of CO2 has been taken into consideration as a fascinating option to store...
Currently, low catalytic activity, selectivity and stability are the biggest challenges which restri...
Abstract The flow‐cell design offers prospect for transition to commercial‐relevant high current den...
Facile interconversion between CO<sub>2</sub> and formate/formic acid (FA) is of broad interest in e...
International audienceWe report electrolyte engineering strategy for CO 2 reduction into formate wit...