The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface chemistry. Firstly, it benchmarks the properties of the majority facet of TiO2 nanoparticles and, secondly, there is a controversy as to whether the water molecule adsorbs intact or deprotonates. We have addressed the adsorption of water on anatase TiO2(101) by synchrotron radiation photoelectron spectroscopy. Three two-dimensional water structures are found during growth at different temperatures: at 100 K, a metastable structure forms with no hydrogen bonding between the water molecules. In accord with prior literature, we assign this phase to chains of disordered molecules. Growth 160 K results in a metastable structure with expressed hydr...
Atomic level understanding of water on titanium dioxide (TiO 2 ), in particular the mineral form ana...
International audienceThe interaction of water with TiO2 is crucial to many of its practical applica...
Water adsorption and surface protonic conduction have been investigated at 25–400 °C in wet (H2O and...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
The adsorption of water on the anatase TiO2(001)-(4 x 1) surface is studied using synchrotron radiat...
The adsorption properties of water on the stoichiometric (101) surface of anatase TiO2 in the temper...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Preparing an anatase TiO2(101) surface with a high density of oxygen vacancies and associated reduce...
The interaction of water with TiO2 is of substantial scientific and technological interest as it det...
Preparing an anatase TiO2(101) surface with a high density of oxygen vacancies and associated reduce...
X-ray photoelectron spectroscopy at ambient conditions of pressure (up to 1.5 Torr) and temperature ...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Titanium dioxide is a material finding applications in variety of areas, including catalysis, photoc...
Preparing an anatase TiO2(101) surface with a high density of oxygen vacancies and associated reduce...
Atomic level understanding of water on titanium dioxide (TiO2), in particular the mineral form anata...
Atomic level understanding of water on titanium dioxide (TiO 2 ), in particular the mineral form ana...
International audienceThe interaction of water with TiO2 is crucial to many of its practical applica...
Water adsorption and surface protonic conduction have been investigated at 25–400 °C in wet (H2O and...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
The adsorption of water on the anatase TiO2(001)-(4 x 1) surface is studied using synchrotron radiat...
The adsorption properties of water on the stoichiometric (101) surface of anatase TiO2 in the temper...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Preparing an anatase TiO2(101) surface with a high density of oxygen vacancies and associated reduce...
The interaction of water with TiO2 is of substantial scientific and technological interest as it det...
Preparing an anatase TiO2(101) surface with a high density of oxygen vacancies and associated reduce...
X-ray photoelectron spectroscopy at ambient conditions of pressure (up to 1.5 Torr) and temperature ...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Titanium dioxide is a material finding applications in variety of areas, including catalysis, photoc...
Preparing an anatase TiO2(101) surface with a high density of oxygen vacancies and associated reduce...
Atomic level understanding of water on titanium dioxide (TiO2), in particular the mineral form anata...
Atomic level understanding of water on titanium dioxide (TiO 2 ), in particular the mineral form ana...
International audienceThe interaction of water with TiO2 is crucial to many of its practical applica...
Water adsorption and surface protonic conduction have been investigated at 25–400 °C in wet (H2O and...