Dye-sensitized interfaces in photocatalytic and solar cells systems are significantly affected by the choice of electrolyte solvent. In the present work, the interface between the hydrophobic Ru-complex Z907, a commonly used dye in molecular solar cells, and TiO2 was investigated with ambient pressure photoelectron spectroscopy (AP-PES) to study the effect of water atmosphere on the chemical and electronic structure of the dye/TiO2 interface. Both laboratory-based Al K alpha as well as synchrotron-based ambient pressure measurements using hard X-ray (AP-HAXPES) were used. AP-HAXPES data were collected at pressures of up to 25 mbar (i.e., the vapor pressure of water at room temperature) showing the presence of an adsorbed water overlayer on ...
The interaction of water with TiO2 is of substantial scientific and technological interest as it det...
International audienceThe interaction of water with TiO2 is crucial to many of its practical applica...
The interaction of water with TiO2 is crucial to many of its practical applications, including photo...
The processes of light harvesting by a sensitiser as in a nanoporous dye-sensitised solar cell, DSC,...
The atomic layer deposition (ALD) of TiO2 on a RuO2(110) surface from tetrakis(dimethylamido) titani...
In this work it has been attempted for the first time to investigate the complete working electrode ...
At the synchrotron BESSY we run the experimental station SoLiAS, dedicated to solid–liquid interface...
The dye-sensitized solar cell is a promising solar cell technology. In these systems the key process...
X-ray photoelectron spectroscopy at ambient conditions of pressure (up to 1.5 Torr) and temperature ...
With an increasing demand for renewable energy sources, research efforts on different solar cell tec...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
Consecutive eight study phases under the successive presence and absence of UV irradiation, water va...
The properties relevant for electron transfer processes between dye molecules and semiconductor subs...
The interfacial structure of water in contact with TiO2 is the key to understand the mechanism of ph...
Studying the interaction between the dye and the surface as well as how the system reacts to light i...
The interaction of water with TiO2 is of substantial scientific and technological interest as it det...
International audienceThe interaction of water with TiO2 is crucial to many of its practical applica...
The interaction of water with TiO2 is crucial to many of its practical applications, including photo...
The processes of light harvesting by a sensitiser as in a nanoporous dye-sensitised solar cell, DSC,...
The atomic layer deposition (ALD) of TiO2 on a RuO2(110) surface from tetrakis(dimethylamido) titani...
In this work it has been attempted for the first time to investigate the complete working electrode ...
At the synchrotron BESSY we run the experimental station SoLiAS, dedicated to solid–liquid interface...
The dye-sensitized solar cell is a promising solar cell technology. In these systems the key process...
X-ray photoelectron spectroscopy at ambient conditions of pressure (up to 1.5 Torr) and temperature ...
With an increasing demand for renewable energy sources, research efforts on different solar cell tec...
X-ray photoelectron spectroscopy (XPS) is a powerful tool for surface and interface analysis, provid...
Consecutive eight study phases under the successive presence and absence of UV irradiation, water va...
The properties relevant for electron transfer processes between dye molecules and semiconductor subs...
The interfacial structure of water in contact with TiO2 is the key to understand the mechanism of ph...
Studying the interaction between the dye and the surface as well as how the system reacts to light i...
The interaction of water with TiO2 is of substantial scientific and technological interest as it det...
International audienceThe interaction of water with TiO2 is crucial to many of its practical applica...
The interaction of water with TiO2 is crucial to many of its practical applications, including photo...