The electrochemical reduction of CO2 to methanol is a potentially cost-effective strategy to reduce the concentration of this greenhouse gas while at the same time producing a value-added chemical. Herein, we detail a highly efficient 2D nickel organic framework containing a large density of highly dispersed salophen NiN2O2 active sites toward electrochemical CO2RR to methanol. By tuning the ligand environment of the salophen NiN2O2, the electrocatalytic activity of the material toward CO2 reduction can be significantly improved. We prove that by introducing a carbonyl group at the ligand environment of the Ni active sites, the electrochemical CO2 reduction activity is highly promoted and its product selectivity reaches a Faradaic efficienc...
Electrochemical CO2 reduction is a potential approach to convert CO2 into valuable chemicals using e...
Electrochemical CO$_2$ reduction is a potential approach to convert CO$_2$ into valuable chemicals u...
Many studies have focused on atomically dispersed metal-nitrogen-carbon (Me-N-C) catalysts owing to ...
The electrochemical reduction of CO2 to methanol is a potentially cost-effective strategy to reduce ...
The electroreduction of CO2, driven by renewable electricity, can be used to sustainably generate sy...
It is generally assumed that the more metal atoms in covalent organic frameworks (COFs) contribute t...
The combustion of fossil fuels has resulted in the amplification of the greenhouse effect, primarily...
The electrochemical conversion of CO2 constitutes an interesting pathway to close the anthropogenic ...
While converting carbon dioxide (CO2) into value-added carbon products by electrolyzing offers a pro...
Advanced anodic electrocatalysis is essential for boosting overall carbon dioxide (CO2) electrolysis...
International audienceInspired by the metal active sites of formate dehydrogenase and CO-dehydrogena...
Atomically dispersed metals maximize the number of catalytic sites and enhance their activity. Howev...
Rosenthal, JoelElectrochemical CO2 reduction was first tested on N-methylated nickel cyclen derivati...
Rational design of nanoscale structures can greatly strengthen heterogeneous catalysis with the maxi...
The electrocatalytic reduction of CO2 represents a possible means of disrupting current petrochemica...
Electrochemical CO2 reduction is a potential approach to convert CO2 into valuable chemicals using e...
Electrochemical CO$_2$ reduction is a potential approach to convert CO$_2$ into valuable chemicals u...
Many studies have focused on atomically dispersed metal-nitrogen-carbon (Me-N-C) catalysts owing to ...
The electrochemical reduction of CO2 to methanol is a potentially cost-effective strategy to reduce ...
The electroreduction of CO2, driven by renewable electricity, can be used to sustainably generate sy...
It is generally assumed that the more metal atoms in covalent organic frameworks (COFs) contribute t...
The combustion of fossil fuels has resulted in the amplification of the greenhouse effect, primarily...
The electrochemical conversion of CO2 constitutes an interesting pathway to close the anthropogenic ...
While converting carbon dioxide (CO2) into value-added carbon products by electrolyzing offers a pro...
Advanced anodic electrocatalysis is essential for boosting overall carbon dioxide (CO2) electrolysis...
International audienceInspired by the metal active sites of formate dehydrogenase and CO-dehydrogena...
Atomically dispersed metals maximize the number of catalytic sites and enhance their activity. Howev...
Rosenthal, JoelElectrochemical CO2 reduction was first tested on N-methylated nickel cyclen derivati...
Rational design of nanoscale structures can greatly strengthen heterogeneous catalysis with the maxi...
The electrocatalytic reduction of CO2 represents a possible means of disrupting current petrochemica...
Electrochemical CO2 reduction is a potential approach to convert CO2 into valuable chemicals using e...
Electrochemical CO$_2$ reduction is a potential approach to convert CO$_2$ into valuable chemicals u...
Many studies have focused on atomically dispersed metal-nitrogen-carbon (Me-N-C) catalysts owing to ...