Atomically dispersed catalytic metal sites anchored on N-doped carbon support catalysts (M-N-C) show great prospects for CO2 electroreduction. Here, single-layer NiZn layered double hydroxides (NiZn-LDHs) was used as a sacrificial assistant to fabricate single-Ni atom anchored on ultrathin porous carbon catalyst. NiZn-LDHs were exfoliated to single-layer by polyhydroxy compounds which took as the carbon resource in Ni-N-C, and single layer NiZn LDHs taking as the Ni resource could avoid the agglomeration of Ni atoms during calcining. The CO Faradaic efficiency (FECO) of the synthesized Ni-N-C catalyst exceeded 90% at −0.6 to −1.0 V and a FECO of 95.2% with a current density of 24 mA cm−2 at −0.9 V. This work not only provides a new method f...
Single-atom catalysts (SACs) show great promise for electrochemical CO2 reduction reaction (CRR), bu...
Here, we report a facile approach for synthesizing M–N–C catalysts (M = Co, Fe, Ni) at a commercial ...
Here, we report a facile approach for synthesizing M–N–C catalysts (M = Co, Fe, Ni) at a commercial ...
Single-atomic transition metal-nitrogen codoped carbon (M-N-C) are efficient substitute catalysts fo...
Single-atomic transition metal-nitrogen codoped carbon (M-N-C) are efficient substitute catalysts fo...
Electrochemical CO2 reduction to value-added chemicals is a critical and challenging process for res...
Rational design of nanoscale structures can greatly strengthen heterogeneous catalysis with the maxi...
While converting carbon dioxide (CO2) into value-added carbon products by electrolyzing offers a pro...
N-doped carbon systems constitute a unique platform for the isolation of metal atoms that have been ...
Although the Faraday efficiency (FE) for CO production of single-atom catalysts immobilized on nitro...
The rational design of single-atom catalysts featuring excellent conductivity, highly accessible dis...
Although the Faraday efficiency (FE) for CO production of single-atom catalysts immobilized on nitro...
International audienceThe development of catalysts for electrochemical reduction of carbon dioxide (...
Although single-atomically dispersed metal-Nx on carbon support (M-NC) has great potential in hetero...
Electrochemical reduction of CO2 to chemical fuel offers a promising strategy for managing the globa...
Single-atom catalysts (SACs) show great promise for electrochemical CO2 reduction reaction (CRR), bu...
Here, we report a facile approach for synthesizing M–N–C catalysts (M = Co, Fe, Ni) at a commercial ...
Here, we report a facile approach for synthesizing M–N–C catalysts (M = Co, Fe, Ni) at a commercial ...
Single-atomic transition metal-nitrogen codoped carbon (M-N-C) are efficient substitute catalysts fo...
Single-atomic transition metal-nitrogen codoped carbon (M-N-C) are efficient substitute catalysts fo...
Electrochemical CO2 reduction to value-added chemicals is a critical and challenging process for res...
Rational design of nanoscale structures can greatly strengthen heterogeneous catalysis with the maxi...
While converting carbon dioxide (CO2) into value-added carbon products by electrolyzing offers a pro...
N-doped carbon systems constitute a unique platform for the isolation of metal atoms that have been ...
Although the Faraday efficiency (FE) for CO production of single-atom catalysts immobilized on nitro...
The rational design of single-atom catalysts featuring excellent conductivity, highly accessible dis...
Although the Faraday efficiency (FE) for CO production of single-atom catalysts immobilized on nitro...
International audienceThe development of catalysts for electrochemical reduction of carbon dioxide (...
Although single-atomically dispersed metal-Nx on carbon support (M-NC) has great potential in hetero...
Electrochemical reduction of CO2 to chemical fuel offers a promising strategy for managing the globa...
Single-atom catalysts (SACs) show great promise for electrochemical CO2 reduction reaction (CRR), bu...
Here, we report a facile approach for synthesizing M–N–C catalysts (M = Co, Fe, Ni) at a commercial ...
Here, we report a facile approach for synthesizing M–N–C catalysts (M = Co, Fe, Ni) at a commercial ...