A surface‐restructuring strategy is presented that involves self‐cleaning Cu catalyst electrodes with unprecedented catalytic stability toward CO2 reduction. Under the working conditions, the Pd atoms pre‐deposited on Cu surface induce continuous morphological and compositional restructuring of the Cu surface, which constantly refreshes the catalyst surface and thus maintains the catalytic properties for CO2 reduction to hydrocarbons. The Pd‐decorated Cu electrode can catalyze CO2 reduction with relatively stable selectivity and current density for up to 16 h, which is one of the best catalytic durability performances among all Cu electrocatalysts for effective CO2 conversion to hydrocarbons. The generality of this approach of utilizing for...
Understanding the role of the oxidation state of the Cu surface and surface-adsorbed intermediate sp...
The direct electrochemical conversion of carbon dioxide to chemicals and fuels is of fundamental sci...
Finding a highly efficient, selective and economic approach for electrochemical reduction of aqueous...
A surface‐restructuring strategy is presented that involves self‐cleaning Cu catalyst electrodes wit...
Cu is the only electrocatalyst that converts CO2 into appreciable quantities of hydrocarbons. Howeve...
The electrochemical reduction of carbon dioxide using renewably generated electricity offers a poten...
Sustainable development and climate change is considered to be one of the top challenges of humanity...
To date, copper is the only monometallic catalyst that can electrochemically reduce CO2 into high va...
Electrocatalytic reduction of CO2 is one possibility to solve the electrical energy storage problem ...
This work describes several studies into the electroreduction of carbon dioxide (CO2RR), both regard...
Copper is a unique electrocatalyst for CO2 reduction, since it is one of the few catalysts able to p...
DoctorElectrochemical carbon dioxide reduction (ECR) mimics the dark reaction of photosynthesis. The...
The electrochemical reduction of CO_2 on copper electrodes is known to generate a wide variety of pr...
The increasing atmospheric carbon dioxide (CO2) level is calling for more efficient CO2 fixation sys...
DoctorConversion of carbon dioxide (CO2) to fuel can mitigate the global climate crisis and the depl...
Understanding the role of the oxidation state of the Cu surface and surface-adsorbed intermediate sp...
The direct electrochemical conversion of carbon dioxide to chemicals and fuels is of fundamental sci...
Finding a highly efficient, selective and economic approach for electrochemical reduction of aqueous...
A surface‐restructuring strategy is presented that involves self‐cleaning Cu catalyst electrodes wit...
Cu is the only electrocatalyst that converts CO2 into appreciable quantities of hydrocarbons. Howeve...
The electrochemical reduction of carbon dioxide using renewably generated electricity offers a poten...
Sustainable development and climate change is considered to be one of the top challenges of humanity...
To date, copper is the only monometallic catalyst that can electrochemically reduce CO2 into high va...
Electrocatalytic reduction of CO2 is one possibility to solve the electrical energy storage problem ...
This work describes several studies into the electroreduction of carbon dioxide (CO2RR), both regard...
Copper is a unique electrocatalyst for CO2 reduction, since it is one of the few catalysts able to p...
DoctorElectrochemical carbon dioxide reduction (ECR) mimics the dark reaction of photosynthesis. The...
The electrochemical reduction of CO_2 on copper electrodes is known to generate a wide variety of pr...
The increasing atmospheric carbon dioxide (CO2) level is calling for more efficient CO2 fixation sys...
DoctorConversion of carbon dioxide (CO2) to fuel can mitigate the global climate crisis and the depl...
Understanding the role of the oxidation state of the Cu surface and surface-adsorbed intermediate sp...
The direct electrochemical conversion of carbon dioxide to chemicals and fuels is of fundamental sci...
Finding a highly efficient, selective and economic approach for electrochemical reduction of aqueous...