Good understanding of the reaction mechanism in the electrochemical reduction of water to hydrogen is crucial to renewable energy technologies. Although previous studies have revealed that the surface properties of materials affect the catalytic reactivity, the effects of a catalytic surface on the hydrogen evolution reaction (HER) on the molecular level are still not well understood. Contrary to general belief, water molecules do not adsorb onto the surfaces of 3C-SiC nanocrystals (NCs), but rather spontaneously dissociate via a surface autocatalytic process forming a complex consisting of −H and −OH fragments. In this study, we show that ultrathin 3C-SiC NCs possess superior electrocatalytic activity in the HER. This arises from the large...
The ultimate goal of photocatalytic CO2 reduction is to achieve high selectivity for a single produc...
For the purpose of efficiently utilizing the renewable solar energy, it is of vital importance to un...
The generation of clean and sustainable hydrogen fuel through water splitting demands efficient and ...
The reaction mechanism of producing hydrogen via water splitting on the different surfaces of cubic ...
Efficient electrochemical hydrogen evolution at ultrathin 3C-SiC nanocrystal electrodes in acid solu...
Efficient electrochemical hydrogen evolution at ultrathin 3C–SiC nanocrystal electrodes in acid solu...
In 1972 Fujishima and Honda conceptualised a photoelectrochemical cell for hydrogen generation via P...
Cubic silicon carbide (3C-SiC) is a promising photoelectrode material for solar water splitting due ...
3C-SiC films have robust mechanical and physicochemical properties and a narrow band gap (2.36 eV). ...
Silicon carbide (SiC), owing to its extraordinary chemical stability and refractory properties, is w...
Surmounting the sluggish water oxidation kinetics beyond the hole-dominated thermodynamic effect is ...
Global energy and environmental crisis have received enormous research attention for a long time. Fo...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
The ultimate goal of photocatalytic CO2 reduction is to achieve high selectivity for a single produc...
For the purpose of efficiently utilizing the renewable solar energy, it is of vital importance to un...
The generation of clean and sustainable hydrogen fuel through water splitting demands efficient and ...
The reaction mechanism of producing hydrogen via water splitting on the different surfaces of cubic ...
Efficient electrochemical hydrogen evolution at ultrathin 3C-SiC nanocrystal electrodes in acid solu...
Efficient electrochemical hydrogen evolution at ultrathin 3C–SiC nanocrystal electrodes in acid solu...
In 1972 Fujishima and Honda conceptualised a photoelectrochemical cell for hydrogen generation via P...
Cubic silicon carbide (3C-SiC) is a promising photoelectrode material for solar water splitting due ...
3C-SiC films have robust mechanical and physicochemical properties and a narrow band gap (2.36 eV). ...
Silicon carbide (SiC), owing to its extraordinary chemical stability and refractory properties, is w...
Surmounting the sluggish water oxidation kinetics beyond the hole-dominated thermodynamic effect is ...
Global energy and environmental crisis have received enormous research attention for a long time. Fo...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
The ultimate goal of photocatalytic CO2 reduction is to achieve high selectivity for a single produc...
For the purpose of efficiently utilizing the renewable solar energy, it is of vital importance to un...
The generation of clean and sustainable hydrogen fuel through water splitting demands efficient and ...