Electrocatalytic CO2 reduction reaction (CO2RR) is greatly facilitated by Au surfaces. However, large fractions of underlying Au atoms are generally unused during the catalytic reaction, which limits mass activity. Herein, we report a strategy for preparing efficient electrocatalysts with high mass activities by the atomic-level transplantation of Au active sites into a Ni4 nanocluster (NC). While the Ni4 NC exclusively produces H2, the Au-transplanted NC selectively produces CO over H2. The origin of the contrasting selectivity observed for this NC is investigated by combining operando and theoretical studies, which reveal that while the Ni sites are almost completely blocked by the CO intermediate in both NCs, the Au sites act as active s...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
Unraveling the atomistic synergistic effects of nanoalloys on the electrocatalytic CO2 reduction rea...
This work describes a coordination enabled galvanic replacement method to decorate atomic Ni cluster...
Previous experimental breakthroughs reveal the potential to create novel heterogeneous catalysts for...
Undercoordinated metal nanoclusters have shown great promise for various catalytic applications. How...
Precise control of elemental configurations within multimetallic nanoparticles (NPs) could enable ac...
The electrochemical CO2 reduction reaction (CO2RR) is a promising approach for converting fossil fue...
Electrochemical CO2 reduction reaction (CO2RR) has attracted significant interest in the storage of ...
Highly active and selective CO<sub>2</sub> conversion into useful chemicals is desirable to generate...
Gold-based materials hold promise in electrocatalytic reduction of CO<sub>2</sub> to fuels. However,...
Today, most of the global energy demand is supplemented by burning fossil fuels, which leads to the ...
Unraveling the atomistic synergistic effects of nanoalloys on the electrocatalytic CO2 reduction rea...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
Metal nanoclusters have recently attracted considerable attention, not only because of their special...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
Unraveling the atomistic synergistic effects of nanoalloys on the electrocatalytic CO2 reduction rea...
This work describes a coordination enabled galvanic replacement method to decorate atomic Ni cluster...
Previous experimental breakthroughs reveal the potential to create novel heterogeneous catalysts for...
Undercoordinated metal nanoclusters have shown great promise for various catalytic applications. How...
Precise control of elemental configurations within multimetallic nanoparticles (NPs) could enable ac...
The electrochemical CO2 reduction reaction (CO2RR) is a promising approach for converting fossil fue...
Electrochemical CO2 reduction reaction (CO2RR) has attracted significant interest in the storage of ...
Highly active and selective CO<sub>2</sub> conversion into useful chemicals is desirable to generate...
Gold-based materials hold promise in electrocatalytic reduction of CO<sub>2</sub> to fuels. However,...
Today, most of the global energy demand is supplemented by burning fossil fuels, which leads to the ...
Unraveling the atomistic synergistic effects of nanoalloys on the electrocatalytic CO2 reduction rea...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
Metal nanoclusters have recently attracted considerable attention, not only because of their special...
The electrocatalytic reduction of CO2 to industrial chemicals and fuels is a promising pathway to su...
Unraveling the atomistic synergistic effects of nanoalloys on the electrocatalytic CO2 reduction rea...
This work describes a coordination enabled galvanic replacement method to decorate atomic Ni cluster...