Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment of large-scale energy-storage systems based on metal–air batteries and reversible fuel cells. In this direction, a wide range of materials have been explored, especially under more favorable alkaline conditions, and several metal chalcogenides have particularly demonstrated excellent performances. However, chalcogenides are thermodynamically less stable than the corresponding oxides and hydroxides under oxidizing potentials in alkaline media. Although this instability in some cases has prevented the application of chalcogenides as oxygen evolution catalysts and it has been disregarded in some others, we propose to use it in our favor to prod...
Oxide-derived copper (OD-Cu) electrodes exhibit higher activity than pristine copper during the carb...
© 2018 Elsevier B.V. Self-standing nanowires are the focus of intense interest as oxygen evolution r...
Understanding the electrocatalytic activity and redox mechanism in mixed metal sulfides has steered ...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Resumen del póster presentado al Microscopy at the Frontiers of Science Congress Series (MFS), celeb...
In the urge of designing noble metal-free and sustainable electrocatalysts for oxygen evolution reac...
Nanostructured copper-cobalt oxide (CuxCo3-xO4, CCO) electrodes are grown directly on conducting sub...
A high activity of a two-dimensional (2D) copper oxide (CuO) electrocatalyst for the oxygen evolutio...
The sluggish kinetics associated with the oxygen evolution reaction (OER) limits the sustainability ...
In the urge of designing noble metal‐free and sustainable electrocatalysts for oxygen evolution reac...
Copper based nanomaterials (Cu, Cu2O, CuO et al) have been broadly used in electrochemistry related ...
The oxygen reduction reaction (ORR) that for instance takes place at the cathode of fuel cells is on...
As one of the most remarkable oxygen evolution reaction (OER) electrocatalysts, metal chalcogenides ...
Covellite phase CuS and carrollite phase CuCo2S4 nano and microstructures were synthesized from tet...
Oxide-derived copper (OD-Cu) electrodes exhibit higher activity than pristine copper during the carb...
© 2018 Elsevier B.V. Self-standing nanowires are the focus of intense interest as oxygen evolution r...
Understanding the electrocatalytic activity and redox mechanism in mixed metal sulfides has steered ...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Resumen del póster presentado al Microscopy at the Frontiers of Science Congress Series (MFS), celeb...
In the urge of designing noble metal-free and sustainable electrocatalysts for oxygen evolution reac...
Nanostructured copper-cobalt oxide (CuxCo3-xO4, CCO) electrodes are grown directly on conducting sub...
A high activity of a two-dimensional (2D) copper oxide (CuO) electrocatalyst for the oxygen evolutio...
The sluggish kinetics associated with the oxygen evolution reaction (OER) limits the sustainability ...
In the urge of designing noble metal‐free and sustainable electrocatalysts for oxygen evolution reac...
Copper based nanomaterials (Cu, Cu2O, CuO et al) have been broadly used in electrochemistry related ...
The oxygen reduction reaction (ORR) that for instance takes place at the cathode of fuel cells is on...
As one of the most remarkable oxygen evolution reaction (OER) electrocatalysts, metal chalcogenides ...
Covellite phase CuS and carrollite phase CuCo2S4 nano and microstructures were synthesized from tet...
Oxide-derived copper (OD-Cu) electrodes exhibit higher activity than pristine copper during the carb...
© 2018 Elsevier B.V. Self-standing nanowires are the focus of intense interest as oxygen evolution r...
Understanding the electrocatalytic activity and redox mechanism in mixed metal sulfides has steered ...