Atomic level understanding of water on titanium dioxide (TiO<sub>2</sub>), in particular the mineral form anatase, is exceptionally important, considering its practical applications including photocatalytic water-splitting, photoinduced hydrophilicity , and water purification.− Although much effort has been devoted to the study of water adsorption and dissociation on anatase, investigating the fundamental steps of single water splitting remains challenging. These challenges arise from the difficulty of chemical identification of single molecular water and its dissociation products. Here, we have unequivocally identified single water molecules and hydroxyls on the TiO<sub>2</sub> anatase (101) surface using scanning tunneling microscopy (STM...
A combination of high-resolution scanning tunneling microscopy and density functional theory is util...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
An understanding of the interaction of water with the anatase(101) surface is crucial for developing...
Atomic level understanding of water on titanium dioxide (TiO<sub>2</sub>), in particular the mineral...
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...
We have investigated the reaction between O2 and H2O, coadsorbed on the (101) surface of a reduced T...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
We have investigated the reaction between O<sub>2</sub> and H<sub>2</sub>O, coadsorbed on the (101) ...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Through an interplay between scanning tunneling microscopy experiments and density functional theory...
The adsorption of water on the anatase TiO2(001)-(4 x 1) surface is studied using synchrotron radiat...
Through an interplay between scanning tunneling microscopy experiments and density functional theory...
The nature of peculiar, short H bonds formed by water molecules in contact with the (101) anatase su...
A combination of high-resolution scanning tunneling microscopy and density functional theory is util...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
An understanding of the interaction of water with the anatase(101) surface is crucial for developing...
Atomic level understanding of water on titanium dioxide (TiO<sub>2</sub>), in particular the mineral...
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...
We have investigated the reaction between O2 and H2O, coadsorbed on the (101) surface of a reduced T...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
We have investigated the reaction between O<sub>2</sub> and H<sub>2</sub>O, coadsorbed on the (101) ...
The anatase TiO2(101) surface and its interaction with water is an important topic in oxide surface ...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Through an interplay between scanning tunneling microscopy experiments and density functional theory...
The adsorption of water on the anatase TiO2(001)-(4 x 1) surface is studied using synchrotron radiat...
Through an interplay between scanning tunneling microscopy experiments and density functional theory...
The nature of peculiar, short H bonds formed by water molecules in contact with the (101) anatase su...
A combination of high-resolution scanning tunneling microscopy and density functional theory is util...
Titanium dioxide exhibits superior photocatalytic properties, mainly occurring in liquid environment...
An understanding of the interaction of water with the anatase(101) surface is crucial for developing...