Summary: Membrane electrode assembly (MEA) electrolyzers can perform stable, high-rate carbon dioxide (CO2) electroreduction for renewable fuels and chemicals, thereby realizing effective carbon utilization to mitigate anthropogenic CO2 emissions. Here, we present a numerical, multiphysics model, computationally intensified 60-fold with a machine learning analysis of computational and experimental data, to address the most urgent systems challenges in CO2 MEA electrolyzers: mitigating carbonate and liquid product crossover to increase CO2 utilization and energy efficiency. We explore the effect of varying the applied potential, CO2 partial pressure, ion-exchange membrane thickness, membrane porosity, and membrane charge on these three metri...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The global concern of the increasing levels of CO2 is growing quickly in the recent years. Therefore...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
Membrane-electrode assemblies (MEAs) are an attractive cell design for the electrochemical reduction...
Advancing reaction rates for electrochemical CO2 reduction in membrane electrode assemblies (MEAs) h...
The electrochemical conversion of carbon dioxide is of increasing interest because it offers a means...
Gas-diffusion electrodes (GDEs) for electrochemical CO2 reduction allow for an order-of-magnitude in...
Gas diffusion electrodes (GDEs) have drastically increased the achievable CO2 reduction (CO2R) curre...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The development of high-performance CO2 electrolyzers is crucial for accelerating the sustainable pr...
Electrochemical conversion of gaseous CO2 to value-added products and fuels is a promising approach ...
The electrochemical reduction of carbon dioxide (CO2R) driven by renewably generated electricity (e....
Fossil fuel power plants are responsible for a significant portion of anthropogenic atmospheric carb...
A zero-gap membrane-electrode assembly (MEA) electrolyzer is a promising design for electrochemical ...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The global concern of the increasing levels of CO2 is growing quickly in the recent years. Therefore...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
Membrane-electrode assemblies (MEAs) are an attractive cell design for the electrochemical reduction...
Advancing reaction rates for electrochemical CO2 reduction in membrane electrode assemblies (MEAs) h...
The electrochemical conversion of carbon dioxide is of increasing interest because it offers a means...
Gas-diffusion electrodes (GDEs) for electrochemical CO2 reduction allow for an order-of-magnitude in...
Gas diffusion electrodes (GDEs) have drastically increased the achievable CO2 reduction (CO2R) curre...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The development of high-performance CO2 electrolyzers is crucial for accelerating the sustainable pr...
Electrochemical conversion of gaseous CO2 to value-added products and fuels is a promising approach ...
The electrochemical reduction of carbon dioxide (CO2R) driven by renewably generated electricity (e....
Fossil fuel power plants are responsible for a significant portion of anthropogenic atmospheric carb...
A zero-gap membrane-electrode assembly (MEA) electrolyzer is a promising design for electrochemical ...
The electrochemical reduction of CO2 (CO2R) to value-added products is an attractive technology for ...
The global concern of the increasing levels of CO2 is growing quickly in the recent years. Therefore...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...