Nitrogen-doped carbon materials are promising electrocatalysts for electroreduction of CO2. However, the low current density and moderate faradaic efficiency of these materials limit their practical application. Here, we report the MOF-derived nitrogen-doped nanoporous carbon (NC) as a highly efficient and stable electrocatalyst for the conversion of CO2 to CO. The NC catalysts were prepared by calcining ZIF-8 at different temperatures in argon (Ar). The catalytic performances show that the higher pyrolysis temperature result in a better CO2 electroreduction activity of the catalysts. The NC catalyst with the best performance achieves high selectivity with 95.4% CO faradaic efficiency (FE) at -0.5 V vs. reversible hydrogen electrode (RHE). ...
International audienceCO2 electroreduction to CO is an attractive strategy for using CO2 as a feedst...
International audienceCO2 electroreduction to CO is an attractive strategy for using CO2 as a feedst...
Earth-abundant transition metal (Fe, Co, or Ni) and nitrogen-doped porous carbon electrocatalysts (M...
A nitrogen-doped carbon was synthesized through the pyrolysis of the well-known metal-organic framew...
In this study, we prepared nitrogen-removed mesoporous carbon (NRMC) catalysts by applying various h...
A nitrogen-doped carbon was synthesized through the pyrolysis of the well-known metal-organic framew...
Electrocatalytic reduction of carbon dioxide to high value-added chemicals is essential for sustaina...
Electrocatalytic CO2 reduction by metal-free nitrogen-doped carbon (N-C) catalysts provides a soluti...
Iron-nitrogen-carbon (Fe-N-C) composite materials show considerable Faradaic efficiency for CO produ...
Iron-nitrogen-carbon (Fe-N-C) composite materials show considerable Faradaic efficiency for CO produ...
Electrochemical reduction of CO2 using electricity from renewable sources is emerging as a promising...
Atomically dispersed metal catalysts supported on the rigidly hollow matrix are promising materials ...
Electrocatalytic reduction of carbon dioxide to high value-added chemicals is essential for sustaina...
Metal- and nitrogen-doped carbon (M-N-C) is a promising material to catalyze electrochemical CO2 red...
In this study, metal-organic frameworks (MOFs) derived cobalt encapsulated in porous nitrogen-doped ...
International audienceCO2 electroreduction to CO is an attractive strategy for using CO2 as a feedst...
International audienceCO2 electroreduction to CO is an attractive strategy for using CO2 as a feedst...
Earth-abundant transition metal (Fe, Co, or Ni) and nitrogen-doped porous carbon electrocatalysts (M...
A nitrogen-doped carbon was synthesized through the pyrolysis of the well-known metal-organic framew...
In this study, we prepared nitrogen-removed mesoporous carbon (NRMC) catalysts by applying various h...
A nitrogen-doped carbon was synthesized through the pyrolysis of the well-known metal-organic framew...
Electrocatalytic reduction of carbon dioxide to high value-added chemicals is essential for sustaina...
Electrocatalytic CO2 reduction by metal-free nitrogen-doped carbon (N-C) catalysts provides a soluti...
Iron-nitrogen-carbon (Fe-N-C) composite materials show considerable Faradaic efficiency for CO produ...
Iron-nitrogen-carbon (Fe-N-C) composite materials show considerable Faradaic efficiency for CO produ...
Electrochemical reduction of CO2 using electricity from renewable sources is emerging as a promising...
Atomically dispersed metal catalysts supported on the rigidly hollow matrix are promising materials ...
Electrocatalytic reduction of carbon dioxide to high value-added chemicals is essential for sustaina...
Metal- and nitrogen-doped carbon (M-N-C) is a promising material to catalyze electrochemical CO2 red...
In this study, metal-organic frameworks (MOFs) derived cobalt encapsulated in porous nitrogen-doped ...
International audienceCO2 electroreduction to CO is an attractive strategy for using CO2 as a feedst...
International audienceCO2 electroreduction to CO is an attractive strategy for using CO2 as a feedst...
Earth-abundant transition metal (Fe, Co, or Ni) and nitrogen-doped porous carbon electrocatalysts (M...