Ni-based electrode coatings with enhanced surface areas, for hydrogen production, were developed using atmospheric plasma spray (APS) and suspension plasma spray (SPS) processes. The results revealed a larger electrochemical active surface area for the coatings produced by SPS compared to those produced by APS process. SEM micrographs showed that the surface microstructure of the sample with the largest surface area was composed of a large number of small cauliflower-like aggregates with an average diameter of 10 \u3bcm.Peer reviewed: YesNRC publication: Ye
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
Electrodeposited porous Ni layers and commercial Ni foams were submitted to spontaneous deposition o...
In my diploma work i focus on the production hydrogen by electrolysis of water using by electrolyzer...
Alkaline water electrolysis is one of the most promising methods for producing high purity hydrogen ...
Foam-like NiMo coatings were produced from an inexpensive mixture of Ni, Al, and Mo powders via atmo...
The EU FCH-JU RESelyser project is concerned with the development of high pressure, high efficiency ...
The work describes the evaluation of Raney nickel electrodes prepared by the technique of atmospheri...
The work describes the evaluation of Raney nickel electrodes prepared by the technique of atmospheri...
Alkaline water electrolysis driven by renewable energy is a promising technology for green hydrogen ...
The increasing use of renewable energies such as wind power and solar energy requires storage capabi...
Major current research trends in alkaline electrolysis are targeted towards improving efficiency, ex...
This thesis discusses results on the development of three-dimensional (3D) Ni-based electrocatalytic...
The RESelyser project has developed high pressure, highly efficient, low cost alkaline water electro...
With the global energy demand growing, there is greater need for production of energy. One of the wa...
Electrocatalytic activity for the hydrogen evolution reaction on Ni–Co–LaNi5 composite electrodes pr...
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
Electrodeposited porous Ni layers and commercial Ni foams were submitted to spontaneous deposition o...
In my diploma work i focus on the production hydrogen by electrolysis of water using by electrolyzer...
Alkaline water electrolysis is one of the most promising methods for producing high purity hydrogen ...
Foam-like NiMo coatings were produced from an inexpensive mixture of Ni, Al, and Mo powders via atmo...
The EU FCH-JU RESelyser project is concerned with the development of high pressure, high efficiency ...
The work describes the evaluation of Raney nickel electrodes prepared by the technique of atmospheri...
The work describes the evaluation of Raney nickel electrodes prepared by the technique of atmospheri...
Alkaline water electrolysis driven by renewable energy is a promising technology for green hydrogen ...
The increasing use of renewable energies such as wind power and solar energy requires storage capabi...
Major current research trends in alkaline electrolysis are targeted towards improving efficiency, ex...
This thesis discusses results on the development of three-dimensional (3D) Ni-based electrocatalytic...
The RESelyser project has developed high pressure, highly efficient, low cost alkaline water electro...
With the global energy demand growing, there is greater need for production of energy. One of the wa...
Electrocatalytic activity for the hydrogen evolution reaction on Ni–Co–LaNi5 composite electrodes pr...
Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the mos...
Electrodeposited porous Ni layers and commercial Ni foams were submitted to spontaneous deposition o...
In my diploma work i focus on the production hydrogen by electrolysis of water using by electrolyzer...