The electrochemical reduction of CO2 holds great promise for lowering the concentration of CO2 in the Earth′s atmosphere. However, several challenges have hindered the commercialization of this technology, including energy efficiency, the solubility of CO2 in the aqueous phase, and electrode stability. In this Minireview, we highlight and summarize the main advantages and limitations that metal–organic frameworks (MOFs) may offer in this field of research, either when used directly as electrocatalysts or when used as catalyst precursors.Accepted Author ManuscriptChemE/Catalysis Engineerin
CO2, emitted mainly from fossil fuel combustion, is one of the major greenhouse gases. CO2 could be ...
In this review, we analyze the emerging field of metal–organic frameworks (MOFs) as catalysts for ch...
In this review, we analyze the emerging field of metal–organic frameworks (MOFs) as catalysts for ch...
The electrochemical reduction of CO2 holds great promise for lowering the concentration of CO2 in th...
The electrochemical reduction of CO2 holds great promise for lowering the concentration of CO2 in th...
<p>The electrochemical reduction of CO<sub>2</sub> holds great promise for lowering the concentratio...
The electrochemical conversion of CO2 constitutes an interesting pathway to close the anthropogenic ...
Electrochemical CO2 reduction reaction (CO2RR) provides a promising approach to curbing harmful emis...
Electrochemical CO2 reduction reaction (CO2RR) provides a promising approach to curbing harmful emis...
This is the final version. Available on open access from MDPI via the DOI in tis recordElectrochemic...
The combustion of fossil fuels has resulted in the amplification of the greenhouse effect, primarily...
A key challenge in the field of electrochemical carbon dioxide reduction is the design of catalytic ...
CO2, emitted mainly from fossil fuel combustion, is one of the major greenhouse gases. CO2 could be ...
Electrochemical CO2 reduction to transportation fuels and valuable platform chemicals provides a sus...
This highlight article focuses on the rapidly emerging area of electrocatalytic metal–organic framew...
CO2, emitted mainly from fossil fuel combustion, is one of the major greenhouse gases. CO2 could be ...
In this review, we analyze the emerging field of metal–organic frameworks (MOFs) as catalysts for ch...
In this review, we analyze the emerging field of metal–organic frameworks (MOFs) as catalysts for ch...
The electrochemical reduction of CO2 holds great promise for lowering the concentration of CO2 in th...
The electrochemical reduction of CO2 holds great promise for lowering the concentration of CO2 in th...
<p>The electrochemical reduction of CO<sub>2</sub> holds great promise for lowering the concentratio...
The electrochemical conversion of CO2 constitutes an interesting pathway to close the anthropogenic ...
Electrochemical CO2 reduction reaction (CO2RR) provides a promising approach to curbing harmful emis...
Electrochemical CO2 reduction reaction (CO2RR) provides a promising approach to curbing harmful emis...
This is the final version. Available on open access from MDPI via the DOI in tis recordElectrochemic...
The combustion of fossil fuels has resulted in the amplification of the greenhouse effect, primarily...
A key challenge in the field of electrochemical carbon dioxide reduction is the design of catalytic ...
CO2, emitted mainly from fossil fuel combustion, is one of the major greenhouse gases. CO2 could be ...
Electrochemical CO2 reduction to transportation fuels and valuable platform chemicals provides a sus...
This highlight article focuses on the rapidly emerging area of electrocatalytic metal–organic framew...
CO2, emitted mainly from fossil fuel combustion, is one of the major greenhouse gases. CO2 could be ...
In this review, we analyze the emerging field of metal–organic frameworks (MOFs) as catalysts for ch...
In this review, we analyze the emerging field of metal–organic frameworks (MOFs) as catalysts for ch...