Electrochemical reduction of carbon dioxide to hydrocarbons, driven by renewable power sources, is a fascinating and clean way to remedy greenhouse gas emission as a result of overdependence on fossil fuels and produce value-added fine chemicals. The Cu-based catalysts feature unique superiorities; nevertheless, achieving high hydrocarbon selectivity is still inhibited and remains a great challenge. In this study, we report on a tailor-made multifunction-coupled Cu-metal–organic framework (Cu-MOF) electrocatalyst by time-resolved controllable restructuration from Cu2O to Cu2O@Cu-MOF. The restructured electrocatalyst features a time-responsive behavior and is equipped with high specific surface area for strong adsorption capacity of CO2 and ...
The electrocatalytic reduction of carbon dioxide at Cu based metal organic framework film surface wa...
Developing highly efficient and selective electrocatalysts for the CO2 reduction reaction to produce...
[EN] Metal-organic frameworks (MOFs) with redox properties are potentially good candidates as noble-...
The electrochemical reduction of CO2 to ethylene provides a carbon-neutral avenue for the conversion...
Carbon dioxide (CO2) electroreduction is promising for balancing the carbon cycle for a sustainable ...
Conversion of carbon dioxide (CO 2 ) to useful chemicals is considered a potential solution to resol...
Judicious tuning of electronic effects, chemical functionalities, and type and distribution of activ...
The CO2 electroreduction to fuels is a feasible approach to provide renewable energy sources. Theref...
Electrochemical reduction of CO<sub>2</sub> to chemical feedstocks is an attractive solution that pr...
Electrochemical reduction of CO2 to obtain high-value-added feedstocks is a promising strategy to al...
CO2 electroreduction holds great promise for addressing global energy and sustainability challenges....
IIn the past decades, the rapid development of industry and economy leads to heavy dependence on fos...
Copper (Cu) provides a cost-effective means of producing value-added fuels through the electrochemic...
The electrochemical carbon dioxide reduction reaction (CO2RR) produces diverse chemical species. Cu ...
Copper is the most promising catalyst for the electrocatalytic conversion of CO2 into multicarbon (C...
The electrocatalytic reduction of carbon dioxide at Cu based metal organic framework film surface wa...
Developing highly efficient and selective electrocatalysts for the CO2 reduction reaction to produce...
[EN] Metal-organic frameworks (MOFs) with redox properties are potentially good candidates as noble-...
The electrochemical reduction of CO2 to ethylene provides a carbon-neutral avenue for the conversion...
Carbon dioxide (CO2) electroreduction is promising for balancing the carbon cycle for a sustainable ...
Conversion of carbon dioxide (CO 2 ) to useful chemicals is considered a potential solution to resol...
Judicious tuning of electronic effects, chemical functionalities, and type and distribution of activ...
The CO2 electroreduction to fuels is a feasible approach to provide renewable energy sources. Theref...
Electrochemical reduction of CO<sub>2</sub> to chemical feedstocks is an attractive solution that pr...
Electrochemical reduction of CO2 to obtain high-value-added feedstocks is a promising strategy to al...
CO2 electroreduction holds great promise for addressing global energy and sustainability challenges....
IIn the past decades, the rapid development of industry and economy leads to heavy dependence on fos...
Copper (Cu) provides a cost-effective means of producing value-added fuels through the electrochemic...
The electrochemical carbon dioxide reduction reaction (CO2RR) produces diverse chemical species. Cu ...
Copper is the most promising catalyst for the electrocatalytic conversion of CO2 into multicarbon (C...
The electrocatalytic reduction of carbon dioxide at Cu based metal organic framework film surface wa...
Developing highly efficient and selective electrocatalysts for the CO2 reduction reaction to produce...
[EN] Metal-organic frameworks (MOFs) with redox properties are potentially good candidates as noble-...