Although many water-related catalytic reactions on Cu-ZnO catalysts, such as methanol steam reforming and water gas shift, have been extensively investigated, little is known about water dissociation on Cu-ZnO catalysts. To reveal the active center for water dissociation on Cu-ZnO catalysts, we performed density functional theory calculations on various domains of Cu-ZnO catalysts, including Cu surfaces, supported ZnO films, and Cu-ZnO interfaces. It is found that water dissociation is hindered by a relatively large energy barrier on both the planar and the stepped Cu surfaces. On supported ZnO films, the barrier of water dissociation is significantly lowered compared with the Cu surfaces and the reaction is essentially thermo-neutral, thus...
Water adsorption on solid surfaces plays a part in a variety of processes, including renewable energ...
This work presents a ReaxFF reactive force-field for use in molecular dynamics simulations of the Zn...
To date, materials at nanoscale are used increasingly in many fields of science and technology. ZnO ...
The interaction of water vapor with ZnO/CuOx/Cu(1 1 1) surfaces was investigated using synchrotron-b...
This thesis discusses the chemistry and physics of Cu and H2O on ZnO surfaces, based primarily on re...
The water-gas shift (WGS) reaction (H2O + CO f H2 + CO2) is regarded as a key catalytic process in a...
Identifying the intrinsic activity of the distinct sites which coexist in oxide-supported metal part...
The hydroxylation structural features of the first adsorption layer and its connection to proton tr...
ZnO is a high-band gap semiconductor material important for microelectronic and catalytic applicatio...
Cu/ZnO heterogeneous systems are used to catalyze the CO2 hydrogenation to methanol, but questions r...
About 90% of all chemicals are produced with the help of catalysts, substances with the ability to a...
The interface between water and ZnO plays an important role in many domains of technological relevan...
Density functional theory and a pseudopotential plane-wave approach are employed to study the effect...
ONIOM calculations using CCSD theory have been performed to study the dissociation of hydrogen and w...
We have calculated the stability of two of the low-index surfaces known to dominate the morphology o...
Water adsorption on solid surfaces plays a part in a variety of processes, including renewable energ...
This work presents a ReaxFF reactive force-field for use in molecular dynamics simulations of the Zn...
To date, materials at nanoscale are used increasingly in many fields of science and technology. ZnO ...
The interaction of water vapor with ZnO/CuOx/Cu(1 1 1) surfaces was investigated using synchrotron-b...
This thesis discusses the chemistry and physics of Cu and H2O on ZnO surfaces, based primarily on re...
The water-gas shift (WGS) reaction (H2O + CO f H2 + CO2) is regarded as a key catalytic process in a...
Identifying the intrinsic activity of the distinct sites which coexist in oxide-supported metal part...
The hydroxylation structural features of the first adsorption layer and its connection to proton tr...
ZnO is a high-band gap semiconductor material important for microelectronic and catalytic applicatio...
Cu/ZnO heterogeneous systems are used to catalyze the CO2 hydrogenation to methanol, but questions r...
About 90% of all chemicals are produced with the help of catalysts, substances with the ability to a...
The interface between water and ZnO plays an important role in many domains of technological relevan...
Density functional theory and a pseudopotential plane-wave approach are employed to study the effect...
ONIOM calculations using CCSD theory have been performed to study the dissociation of hydrogen and w...
We have calculated the stability of two of the low-index surfaces known to dominate the morphology o...
Water adsorption on solid surfaces plays a part in a variety of processes, including renewable energ...
This work presents a ReaxFF reactive force-field for use in molecular dynamics simulations of the Zn...
To date, materials at nanoscale are used increasingly in many fields of science and technology. ZnO ...