Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated products. Nevertheless, the huge kinetic barrier of Cu surfaces for the formation of a C-C bond on the path toward C2+products has remained unsolved to date. In this work, inspired by the successful growth of 2D borophene on Cu (111) surfaces [Nat. Nanotechnol., 2019,14(1), 44], we introduce a high density of one-dimensional copper/borophene interface sites for the C-C coupling reaction by using a framework of density functional theory calculations. Cu alone interacts very weakly with CO, while its synergistic interfacial interactions with boron atoms could significantly boost the CO binding strength, thus facilitating C-C coupling. The Cu-boro...
The electrochemical reduction of carbon monoxide is a promising approach for the renewable productio...
Periodic density functional theory calculations were carried out to investigate CO dissociation path...
Density functional theory is employed to investigate the Fischer-Tropsch mechanism on copper Sigma 5...
Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated pr...
Electrochemical CO2 reduction to valuable ethylene and ethanol offers a promising strategy to lower ...
Synthesis gas (CO + H2) conversion is an important process in the transformation of coal, natural ga...
While extensive research has been conducted on the conversion of CO2 to C1 products, the synthesis o...
The deeper reduction of CO to multi-carbon-based fuels with higher energy densities and wider applic...
The carbon–carbon (C–C) bond formation is essential for the electroconversion of CO2 into high-energ...
The efficient electrochemical conversion of CO2 to fuels or stock chemicals with high-energy density...
The carbon–carbon (C–C) bond formation is essential for the electroconversion of CO2 into high-energ...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
The deeper reduction of CO to multi-carbon-based fuels with higher energy densities and wider applic...
Combining quantum-mechanical simulations and synthesis tools allows the design of highly efficient C...
Recent experiments show that the grain boundaries (GBs) of copper nanoparticles (NPs) lead to an out...
The electrochemical reduction of carbon monoxide is a promising approach for the renewable productio...
Periodic density functional theory calculations were carried out to investigate CO dissociation path...
Density functional theory is employed to investigate the Fischer-Tropsch mechanism on copper Sigma 5...
Currently, copper is the most active monometallic catalyst to generate hydrocarbon and oxygenated pr...
Electrochemical CO2 reduction to valuable ethylene and ethanol offers a promising strategy to lower ...
Synthesis gas (CO + H2) conversion is an important process in the transformation of coal, natural ga...
While extensive research has been conducted on the conversion of CO2 to C1 products, the synthesis o...
The deeper reduction of CO to multi-carbon-based fuels with higher energy densities and wider applic...
The carbon–carbon (C–C) bond formation is essential for the electroconversion of CO2 into high-energ...
The efficient electrochemical conversion of CO2 to fuels or stock chemicals with high-energy density...
The carbon–carbon (C–C) bond formation is essential for the electroconversion of CO2 into high-energ...
Density functional methods are applied to explore the reaction mechanism for CO₂ hydrogenation to me...
The deeper reduction of CO to multi-carbon-based fuels with higher energy densities and wider applic...
Combining quantum-mechanical simulations and synthesis tools allows the design of highly efficient C...
Recent experiments show that the grain boundaries (GBs) of copper nanoparticles (NPs) lead to an out...
The electrochemical reduction of carbon monoxide is a promising approach for the renewable productio...
Periodic density functional theory calculations were carried out to investigate CO dissociation path...
Density functional theory is employed to investigate the Fischer-Tropsch mechanism on copper Sigma 5...