The stable deposition of reactive nanostructures on metal electrodes is a key process for modern technologies including energy conversion/ storage, electrocatalysis or sensing. Here a facile, scalable route is reported, which allows the bulk nanostructuring of copper foam electrodes with metal, metal oxide or metal hydroxide nanostructures. A concentration‐gradient driven synthetic approach enables the fabrication of Janus‐type electrodes where one face features Cu(OH)$_{2}$ nanowires, while the other face features CuO nanoflowers. Thermal or chemical conversion of the nanostructured surfaces into copper oxide or copper metal is possible whilst retaining the respective nanostructure morphologies. As proof of concept, the functionalized elec...
Nanostructured copper compounds were grown by electrochemical anodization of copper foil in aqueous ...
Electrochemical reduction of CO<sub>2</sub>, an artificial way of carbon recycling, represents one p...
The electrochemical formation of nanostructured materials is a cost effective route to creating subs...
The stable deposition of reactive nanostructures on metal electrodes is a key process for modern tec...
Copper based nanomaterials (Cu, Cu2O, CuO et al) have been broadly used in electrochemistry related ...
In this work, the growth of copper oxide nanoarrays on the surface of copper foils by gas-based oxid...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
In this study, we synthesized copper hydroxide nanosheet and investigated its electrochemical proper...
Typically, anodic oxidation of metals results in the formation of hexagonally arranged nanoporous or...
Typically, anodic oxidation of metals results in the formation of hexagonally arranged nanoporous or...
A robust and efficient route to modify the chemical and physical properties of polycrystalline coppe...
An effective fibrous Cu electrode surface, created using a procedure combining high-temperature anne...
A robust and efficient route to modify the chemical and physical properties of polycrystalline coppe...
Cu(OH)(2) nanowires have been synthesized by anodic oxidation of copper through a simple electrolysi...
Nanostructured copper compounds were grown by electrochemical anodization of copper foil in aqueous ...
Electrochemical reduction of CO<sub>2</sub>, an artificial way of carbon recycling, represents one p...
The electrochemical formation of nanostructured materials is a cost effective route to creating subs...
The stable deposition of reactive nanostructures on metal electrodes is a key process for modern tec...
Copper based nanomaterials (Cu, Cu2O, CuO et al) have been broadly used in electrochemistry related ...
In this work, the growth of copper oxide nanoarrays on the surface of copper foils by gas-based oxid...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
International audienceTo use water as the source of electrons for proton or CO2 reduction within ele...
In this study, we synthesized copper hydroxide nanosheet and investigated its electrochemical proper...
Typically, anodic oxidation of metals results in the formation of hexagonally arranged nanoporous or...
Typically, anodic oxidation of metals results in the formation of hexagonally arranged nanoporous or...
A robust and efficient route to modify the chemical and physical properties of polycrystalline coppe...
An effective fibrous Cu electrode surface, created using a procedure combining high-temperature anne...
A robust and efficient route to modify the chemical and physical properties of polycrystalline coppe...
Cu(OH)(2) nanowires have been synthesized by anodic oxidation of copper through a simple electrolysi...
Nanostructured copper compounds were grown by electrochemical anodization of copper foil in aqueous ...
Electrochemical reduction of CO<sub>2</sub>, an artificial way of carbon recycling, represents one p...
The electrochemical formation of nanostructured materials is a cost effective route to creating subs...