Electrochemical CO2 reduction (EC-CO2R) has seen a resurgence in interest over the past several years; however, the means of analyzing catalytically produced products continues to rely on decades-old methods such as gas chromatography, high-performance liquid chromatography, and nuclear magnetic resonance. Real-time analysis of the gaseous and liquid products of this reaction is highly desirable; however, few analytical techniques have been developed thus far to meet this need. Here, we demonstrate the first use of selected-ion flow-tube mass spectrometry (SIFT-MS) as an analytical tool capable of measuring in real time both the gas- and liquid-phase products of EC-CO2R in aqueous solution. SIFT-MS uses well-understood ion–molecule reaction...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical conversion of carbon dioxide into valuable chemicals or fuels is an increasingly imp...
The discovery of electrocatalysts that can efficiently reduce CO2 to fuels with high selectivity is ...
The mechanistic understanding of electrochemical CO2 reduction reaction (CO2 RR) requires a rapid an...
The mechanistic understanding of electrochemical CO2 reduction reaction (CO2 RR) requires a rapid an...
Methods that provide real‐time information are essential to resolve transients occurring at dynamic ...
The mechanism and dynamics of the CO2 reduction reaction (CO2RR) remain poorly understood, which is ...
The electrochemical reduction of carbon dioxide is sensitive to electrolyte polarization, which caus...
We quantify the formation rates and faradaic efficiencies for liquid products of CO2 reduction on co...
The efficiency of the direct electrochemical CO$_{2}$ reduction can be improved by the development o...
Identifying new catalyst materials for complex reactions such as the electrochemical reduction of CO...
Identifying new catalyst materials for complex reactions such as the electrochemical reduction of CO...
Electrochemical conversion of carbon dioxide into valuable chemicals or fuels is an increasingly imp...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical conversion of carbon dioxide into valuable chemicals or fuels is an increasingly imp...
The discovery of electrocatalysts that can efficiently reduce CO2 to fuels with high selectivity is ...
The mechanistic understanding of electrochemical CO2 reduction reaction (CO2 RR) requires a rapid an...
The mechanistic understanding of electrochemical CO2 reduction reaction (CO2 RR) requires a rapid an...
Methods that provide real‐time information are essential to resolve transients occurring at dynamic ...
The mechanism and dynamics of the CO2 reduction reaction (CO2RR) remain poorly understood, which is ...
The electrochemical reduction of carbon dioxide is sensitive to electrolyte polarization, which caus...
We quantify the formation rates and faradaic efficiencies for liquid products of CO2 reduction on co...
The efficiency of the direct electrochemical CO$_{2}$ reduction can be improved by the development o...
Identifying new catalyst materials for complex reactions such as the electrochemical reduction of CO...
Identifying new catalyst materials for complex reactions such as the electrochemical reduction of CO...
Electrochemical conversion of carbon dioxide into valuable chemicals or fuels is an increasingly imp...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical real-time mass spectrometry (EC-RTMS) is a novel technique for the real-time monitor...
Electrochemical conversion of carbon dioxide into valuable chemicals or fuels is an increasingly imp...
The discovery of electrocatalysts that can efficiently reduce CO2 to fuels with high selectivity is ...