Tremendous research efforts have been made to electrochemically convert CO2 into useful chemicals, with the main products being limited to hydrocarbons and oxygenates. One-step processes that integrate CO2 reduction with a subsequent reaction to produce other types of functional chemicals are economically attractive. Here we report that direct electrochemical conversion of CO2 to 2-bromoethanol, a valuable pharmaceutical intermediate, is enabled by coupling the anodic and cathodic reactions with the presence of potassium bromide electrolyte in a membraneless electrochemical cell. The maximum Faradaic efficiency of converting CO2 to 2-bromoethanol that we achieved is 40% at −1.01 VRHE with a partial current density of −19 mA cm–2. Our work d...
Direct electrochemical reduction of CO2 to C2 products such as ethylene is more efficient in alkalin...
Sustainable electrosynthesis technologies are rapidly developing stimulated by the drive for sustain...
Two electrochemical approaches that simultaneously convert carbon dioxide and high salinity brines t...
Electrochemical reduction of CO<sub>2</sub> into carbon-based products using excess clean electricit...
Recycling technologies of CO2 allow to introduce renewable energy in the chemical and energy chain, ...
Carbon dioxide can be converted to compounds such as formic acid, methanol or methane electrochemica...
Carbon dioxide has been electrochemically reduced to organic substances on dual-film electrodes modi...
Converting CO2 into valuable chemical products has been intensively explored in recent years. Benefi...
In industrial electrochemical processes it is of paramount importance to achieve efficient, selecti...
Electrochemical reduction of CO2 can generate fuel precursors and additives, yet the set of possible...
The electroreduction of CO2 into value-added products (e.g. CO) constitutes an excellent means of de...
Reducing the carbon intensity of the chemical industry has become a priority topic. The conversion o...
In industrial electrochemical processes it is of paramount importance to achieve efficient, selectiv...
Due to rising concerns about climate change, a lot of research is currently underway with respect to...
The reduction of carbon dioxide is considered a relevant topic for both the synthesis of chemicals a...
Direct electrochemical reduction of CO2 to C2 products such as ethylene is more efficient in alkalin...
Sustainable electrosynthesis technologies are rapidly developing stimulated by the drive for sustain...
Two electrochemical approaches that simultaneously convert carbon dioxide and high salinity brines t...
Electrochemical reduction of CO<sub>2</sub> into carbon-based products using excess clean electricit...
Recycling technologies of CO2 allow to introduce renewable energy in the chemical and energy chain, ...
Carbon dioxide can be converted to compounds such as formic acid, methanol or methane electrochemica...
Carbon dioxide has been electrochemically reduced to organic substances on dual-film electrodes modi...
Converting CO2 into valuable chemical products has been intensively explored in recent years. Benefi...
In industrial electrochemical processes it is of paramount importance to achieve efficient, selecti...
Electrochemical reduction of CO2 can generate fuel precursors and additives, yet the set of possible...
The electroreduction of CO2 into value-added products (e.g. CO) constitutes an excellent means of de...
Reducing the carbon intensity of the chemical industry has become a priority topic. The conversion o...
In industrial electrochemical processes it is of paramount importance to achieve efficient, selectiv...
Due to rising concerns about climate change, a lot of research is currently underway with respect to...
The reduction of carbon dioxide is considered a relevant topic for both the synthesis of chemicals a...
Direct electrochemical reduction of CO2 to C2 products such as ethylene is more efficient in alkalin...
Sustainable electrosynthesis technologies are rapidly developing stimulated by the drive for sustain...
Two electrochemical approaches that simultaneously convert carbon dioxide and high salinity brines t...