The fast, single-step and easily scalable production by plasma electrolytic oxidation (PEO) of large area TiO2 electrodes with excellent photoactivity in water splitting under simulated solar light is systematically investigated here. In particular, the effects that the cell voltage (100\u2013180 V) and the processing time (0.5\u201315 min) have on the electrode properties are studied. The PEO-produced oxide layers are porous, the predominant crystalline structure shifting from anatase, to an anatase-rutile mixture, and finally to rutile by rising the cell voltage. The electrodes show a double-layered structure, with a more compact layer at the interface with the titanium substrate and a thick porous layer on the external surface. The photo...
The behaviour of TiO2 based electrodes was investigated during the photoelectrocatalytic water split...
Solar hydrogen from photoelectrochemical water splitting is a possible solution for future energy su...
A new plasma-assisted electrolysis method has been developed to synthesize amorphous TiO2 nanopartic...
The fast, single-step and easily scalable production by plasma electrolytic oxidation (PEO) of large...
The photocatalytic activity of titanium dioxide (TiO2) results from its crystalline phase's anatase ...
In this study, we report an investigation of the photoelectrochemical activity of TiO2 films formed ...
It is well known that structure and surface chemistry have a great influence on the photoelectrochem...
This chapter is focused on photoelectrochemical water splitting using titanium dioxide, TiO2, as the...
A highly porous surface with a high crystalline content and resultant photocatalytic activity is ens...
A new type of nonstoichiometric rutile titanium dioxide (TiO2) film with around 15 at% oxygen vacanc...
The behaviour of TiO2 based electrodes was investigated during the photoelectrocatalytic water split...
1 figure.-- Abstract of the work presented at the EHEC 2022, European Hydrogen Energy Conference 18-...
Water shortages are anticipated to occur all over the world and are likely to have a significant eff...
Porous single crystals are promising candidates for solar fuel production owing to their long range ...
Fossil fuels have been critical to the development of modern society, but concerns over pollution, e...
The behaviour of TiO2 based electrodes was investigated during the photoelectrocatalytic water split...
Solar hydrogen from photoelectrochemical water splitting is a possible solution for future energy su...
A new plasma-assisted electrolysis method has been developed to synthesize amorphous TiO2 nanopartic...
The fast, single-step and easily scalable production by plasma electrolytic oxidation (PEO) of large...
The photocatalytic activity of titanium dioxide (TiO2) results from its crystalline phase's anatase ...
In this study, we report an investigation of the photoelectrochemical activity of TiO2 films formed ...
It is well known that structure and surface chemistry have a great influence on the photoelectrochem...
This chapter is focused on photoelectrochemical water splitting using titanium dioxide, TiO2, as the...
A highly porous surface with a high crystalline content and resultant photocatalytic activity is ens...
A new type of nonstoichiometric rutile titanium dioxide (TiO2) film with around 15 at% oxygen vacanc...
The behaviour of TiO2 based electrodes was investigated during the photoelectrocatalytic water split...
1 figure.-- Abstract of the work presented at the EHEC 2022, European Hydrogen Energy Conference 18-...
Water shortages are anticipated to occur all over the world and are likely to have a significant eff...
Porous single crystals are promising candidates for solar fuel production owing to their long range ...
Fossil fuels have been critical to the development of modern society, but concerns over pollution, e...
The behaviour of TiO2 based electrodes was investigated during the photoelectrocatalytic water split...
Solar hydrogen from photoelectrochemical water splitting is a possible solution for future energy su...
A new plasma-assisted electrolysis method has been developed to synthesize amorphous TiO2 nanopartic...