Advancing reaction rates for electrochemical CO2 reduction in membrane electrode assemblies (MEAs) have boosted the promise of the technology while exposing new shortcomings. Among these is the maximum utilization of CO2, which is capped at 50% (CO as targeted product) due to unwanted homogeneous reactions. Using bipolar membranes in an MEA (BPMEA) has the capability of preventing parasitic CO2 losses, but their promise is dampened by poor CO2 activity and selectivity. In this work, we enable a 3-fold increase in the CO2 reduction selectivity of a BPMEA system by promoting alkali cation (K+) concentrations on the catalyst's surface, achieving a CO Faradaic efficiency of 68%. When compared to an anion exchange membrane, the cation-infused bi...
Gas-diffusion electrodes (GDEs) for electrochemical CO2 reduction allow for an order-of-magnitude in...
Electrochemistry can be a useful technology to enable the transition toward renewable energy sources...
We report a new strategy to improve the reactivity and durability of a membrane electrode assembly (...
Typically, anion exchange membranes (AEMs) are used in CO2 electrolyzers, but those suffer from unwa...
Cell designs for the electrochemical reduction of CO2 from gas phase were developed and investigated...
AbstractElectrolyzers for CO2 reduction containing bipolar membranes (BPM) are promising due to low ...
Membrane-electrode assemblies (MEAs) are an attractive cell design for the electrochemical reduction...
Summary: Membrane electrode assembly (MEA) electrolyzers can perform stable, high-rate carbon dioxid...
A bipolar membrane (BPM), consisting of a cation and an anion exchange layer (CEL and AEL), can be u...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
Electrochemical conversion of gaseous CO2 to value-added products and fuels is a promising approach ...
The global concern of the increasing levels of CO2 is growing quickly in the recent years. Therefore...
The electrochemical conversion of carbon dioxide is of increasing interest because it offers a means...
The scaling-up of electrochemical CO2 reduction requires circumventing the CO2 loss as carbonates un...
Gas-diffusion electrodes (GDEs) for electrochemical CO2 reduction allow for an order-of-magnitude in...
Electrochemistry can be a useful technology to enable the transition toward renewable energy sources...
We report a new strategy to improve the reactivity and durability of a membrane electrode assembly (...
Typically, anion exchange membranes (AEMs) are used in CO2 electrolyzers, but those suffer from unwa...
Cell designs for the electrochemical reduction of CO2 from gas phase were developed and investigated...
AbstractElectrolyzers for CO2 reduction containing bipolar membranes (BPM) are promising due to low ...
Membrane-electrode assemblies (MEAs) are an attractive cell design for the electrochemical reduction...
Summary: Membrane electrode assembly (MEA) electrolyzers can perform stable, high-rate carbon dioxid...
A bipolar membrane (BPM), consisting of a cation and an anion exchange layer (CEL and AEL), can be u...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
Electrochemical conversion of gaseous CO2 to value-added products and fuels is a promising approach ...
The global concern of the increasing levels of CO2 is growing quickly in the recent years. Therefore...
The electrochemical conversion of carbon dioxide is of increasing interest because it offers a means...
The scaling-up of electrochemical CO2 reduction requires circumventing the CO2 loss as carbonates un...
Gas-diffusion electrodes (GDEs) for electrochemical CO2 reduction allow for an order-of-magnitude in...
Electrochemistry can be a useful technology to enable the transition toward renewable energy sources...
We report a new strategy to improve the reactivity and durability of a membrane electrode assembly (...