The size of the band gap and the energy position of the band edges make several oxynitride semiconductors promising candidates for efficient hydrogen and oxygen production under solar light illumination. Intense research efforts dedicated to oxynitride materials have unveiled the majority of their most important properties. However, two crucial aspects have received much less attention: One is the critical issue of compositional/structural surface modifications that occur during operation and how these affect photoelectrochemical performance. The second concerns the relation between electrochemical response and the crystallographic surface orientation of the oxynitride semiconductor. These are indeed topics of fundamental importance, since ...
A complete photoelectrochem. device requires many components, all working together at optimal effici...
Oxynitrides with the photoelectrochemical stability of oxides and desirable band energetics of nitri...
Oxynitrides with the photoelectrochemical stability of oxides and desirable band energetics of nitri...
The conversion of solar light into hydrogen by photoelectrochemical water splitting is one of the po...
LaTiOxNy oxynitride thin films are employed to study the surface modifications at the solid-liquid i...
The question of finding a clean alternative to conventional energy has become an essential challenge...
Our dependency on fossil fuels remains the largest contributing factor to anthropogenic climate chan...
Oxynitrides are promising materials for water splitting under visible light. Members of this class o...
Photoelectrochemical (PEC) water splitting has been regarded as the good way to produce hydrogen usi...
Energy shortage is the most critical problems we will face in the future. Solar energy is one of the...
International audienceThe use of solar energy is of highest interest from a low environmental impact...
International audienceIn this study, the influence of the degree of crystallization and thickness of...
The nitrogen substitution into the oxygen sites of several oxide materials leads to a reduction of t...
International audienceThin films of the Lanthanum Titanium oxynitride perovskite (LaTiOxNy) synthesi...
Perovskite oxynitrides are an established class of photocatalyst materials for water splitting. Prev...
A complete photoelectrochem. device requires many components, all working together at optimal effici...
Oxynitrides with the photoelectrochemical stability of oxides and desirable band energetics of nitri...
Oxynitrides with the photoelectrochemical stability of oxides and desirable band energetics of nitri...
The conversion of solar light into hydrogen by photoelectrochemical water splitting is one of the po...
LaTiOxNy oxynitride thin films are employed to study the surface modifications at the solid-liquid i...
The question of finding a clean alternative to conventional energy has become an essential challenge...
Our dependency on fossil fuels remains the largest contributing factor to anthropogenic climate chan...
Oxynitrides are promising materials for water splitting under visible light. Members of this class o...
Photoelectrochemical (PEC) water splitting has been regarded as the good way to produce hydrogen usi...
Energy shortage is the most critical problems we will face in the future. Solar energy is one of the...
International audienceThe use of solar energy is of highest interest from a low environmental impact...
International audienceIn this study, the influence of the degree of crystallization and thickness of...
The nitrogen substitution into the oxygen sites of several oxide materials leads to a reduction of t...
International audienceThin films of the Lanthanum Titanium oxynitride perovskite (LaTiOxNy) synthesi...
Perovskite oxynitrides are an established class of photocatalyst materials for water splitting. Prev...
A complete photoelectrochem. device requires many components, all working together at optimal effici...
Oxynitrides with the photoelectrochemical stability of oxides and desirable band energetics of nitri...
Oxynitrides with the photoelectrochemical stability of oxides and desirable band energetics of nitri...