© 2015 Elsevier B.V. In-depth characteristic studies with H2 activity and theoretical calculations were used to reveal the copper oxidation states most effective for photocatalytic hydrogen production when loaded on TiO2. When the copper was originally present as CuO, photogenerated electrons initially reduced the Cu2+ to Cu+ in preference to proton reduction. The resulting Cu2O then behaved as a secondary photocatalyst on the TiO2 surface acting to improve the hydrogen production rate (1.4 times greater than neat TiO2). When the copper was originally present as Cu0, an improved hydrogen generation rate was also evident (2.4 times greater than Cu2O/TiO2) and the metallic state was retained over the course of the reaction. In this case, the ...
The existing literature survey reports rare and conflicting studies on the effect of the preparation...
Titanium dioxide nanoparticles co-modified with CuOx (0≤x≤2) and carbonaceous materials were prepare...
This thesis aims to explore the potential of cost-effective Cu-TiO2 in photocatalytic H2 production ...
In-depth characteristic studies with H₂ activity and theoretical calculations were used to reveal th...
This work focuses on the influence of Cu oxidation state on photocatalytic hydrogen generation by Cu...
The technology for generating hydrogen (H2) using photocatalysis has attracted considerable attentio...
Copper doped‐TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H2 pr...
Copper doped‐TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H2 pr...
Copper doped-TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H-2 p...
Copper doped‐TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H2 pr...
Copper doped-TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H-2 p...
Deposition of copper on titanium dioxide holds great promise in producing materials with high activi...
Deposition of copper on titanium dioxide holds great promise in producing materials with high activi...
PubMed ID: 26807649The efficient gas phase photocatalytic hydrogenation of CO2 into a desirable rene...
The existing literature survey reports rare and conflicting studies on the effect of the preparation...
The existing literature survey reports rare and conflicting studies on the effect of the preparation...
Titanium dioxide nanoparticles co-modified with CuOx (0≤x≤2) and carbonaceous materials were prepare...
This thesis aims to explore the potential of cost-effective Cu-TiO2 in photocatalytic H2 production ...
In-depth characteristic studies with H₂ activity and theoretical calculations were used to reveal th...
This work focuses on the influence of Cu oxidation state on photocatalytic hydrogen generation by Cu...
The technology for generating hydrogen (H2) using photocatalysis has attracted considerable attentio...
Copper doped‐TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H2 pr...
Copper doped‐TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H2 pr...
Copper doped-TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H-2 p...
Copper doped‐TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H2 pr...
Copper doped-TiO2 (P25) nanomaterials have been intensively studied as promising catalysts for H-2 p...
Deposition of copper on titanium dioxide holds great promise in producing materials with high activi...
Deposition of copper on titanium dioxide holds great promise in producing materials with high activi...
PubMed ID: 26807649The efficient gas phase photocatalytic hydrogenation of CO2 into a desirable rene...
The existing literature survey reports rare and conflicting studies on the effect of the preparation...
The existing literature survey reports rare and conflicting studies on the effect of the preparation...
Titanium dioxide nanoparticles co-modified with CuOx (0≤x≤2) and carbonaceous materials were prepare...
This thesis aims to explore the potential of cost-effective Cu-TiO2 in photocatalytic H2 production ...