Recently, a large number of nanostructured metal‐containing materials have been developed for the electrochemical CO$_2$ reduction reaction (eCO$_2$RR). However, it remains a challenge to achieve high activity and selectivity with respect to the metal load due to the limited concentration of surface metal atoms. Here, it is reported that the bismuth‐based metal–organic framework Bi(1,3,5‐tris(4‐carboxyphenyl)benzene), herein denoted Bi(btb), works as a precatalyst and undergoes a structural rearrangement at reducing potentials to form highly active and selective catalytic Bi‐based nanoparticles dispersed in a porous organic matrix. The structural change is investigated by electron microscopy, X‐ray diffraction, total scattering, and spectro...
The direct utilization of CO2 by electroreduction is a promising route to achieve valuable chemicals...
Electrochemical CO2 reduction (CO2RR) to produce high value-added chemicals or fuels is a promising ...
Two-dimensional (2D) engineering of materials has been recently explored to enhance the performance ...
Oxides containing two-dimensional metallic catalysts have shown enhanced catalytic activity, stabil...
Bismuth is a promising electrocatalyst for active and selective CO2 electroreduction to formate. Her...
Electrochemically converting carbon dioxide (CO2) to formate offers a promising approach for energy ...
Electrochemical reduction of CO2 to value-added products is an important and challenging reaction fo...
Electrochemical CO2 reduction (CO2ER) to formate is an attractive approach for CO2 utilization. Here...
Electrochemical reduction of carbon dioxide (CO2) into green fuels and valuable chemicals is an up-a...
We report a cost-effective, straightforward synthesis of a novel electrocatalyst for the reduction o...
Understanding the structural and chemical changes that reactive metal–organic frameworks (MOFs) unde...
Herein, the electrochemical reduction of CO2 to formate on carbon-supported bismuth nanoparticles is...
2D bismuth nanosheets are a promising layered material for formate-producing via electrocatalytic CO...
A nanostructured bismuth dendrite catalyst was designed and directly grown on treated carbon paper u...
Herein, the electrochemical reduction of CO2 to formate on carbon-supported bismuth nanoparticles is...
The direct utilization of CO2 by electroreduction is a promising route to achieve valuable chemicals...
Electrochemical CO2 reduction (CO2RR) to produce high value-added chemicals or fuels is a promising ...
Two-dimensional (2D) engineering of materials has been recently explored to enhance the performance ...
Oxides containing two-dimensional metallic catalysts have shown enhanced catalytic activity, stabil...
Bismuth is a promising electrocatalyst for active and selective CO2 electroreduction to formate. Her...
Electrochemically converting carbon dioxide (CO2) to formate offers a promising approach for energy ...
Electrochemical reduction of CO2 to value-added products is an important and challenging reaction fo...
Electrochemical CO2 reduction (CO2ER) to formate is an attractive approach for CO2 utilization. Here...
Electrochemical reduction of carbon dioxide (CO2) into green fuels and valuable chemicals is an up-a...
We report a cost-effective, straightforward synthesis of a novel electrocatalyst for the reduction o...
Understanding the structural and chemical changes that reactive metal–organic frameworks (MOFs) unde...
Herein, the electrochemical reduction of CO2 to formate on carbon-supported bismuth nanoparticles is...
2D bismuth nanosheets are a promising layered material for formate-producing via electrocatalytic CO...
A nanostructured bismuth dendrite catalyst was designed and directly grown on treated carbon paper u...
Herein, the electrochemical reduction of CO2 to formate on carbon-supported bismuth nanoparticles is...
The direct utilization of CO2 by electroreduction is a promising route to achieve valuable chemicals...
Electrochemical CO2 reduction (CO2RR) to produce high value-added chemicals or fuels is a promising ...
Two-dimensional (2D) engineering of materials has been recently explored to enhance the performance ...