At present, TiO2 is one of the most widely used photocatalytic materials. However, the narrow response range to light limits the photocatalytic performance. Herein, we reported a successful construction of self-doped R-WO3/R-TiO2/CC nanocomposites on flexible carbon cloth (CC) via electrochemical reduction to increase the oxygen vacancies (Ovs), resulting in an enhanced separation efficiency of photo-induced charge carriers. The photocurrent of R-WO3/R-TiO2/CC at −1.6 V (vs. SCE) was 2.6 times higher than that of WO3/TiO2/CC, which suggested that Ovs could improve the response to sunlight. Moreover, the photocatalytic activity of R-WO3/TiO2/CC was explored using methylene blue (MB). The degradation rate of MB could reach 68%, which was 1.3 ...
Novel WO3/TiO2 microrods and microplates are prepared by simple precipitation and calcination proces...
In the last few decades, TiO2 has been widely used in different types of photocatalytic applications...
In this study, the W18O49 nanowire bundles were grown on the surface of nanoporous TiO2 sphere by a ...
The use of sunlight for photocatalytic oxidation is an ideal strategy, but it is limited by factors ...
Coupling TiO2 with WO3 to develop photocatalytic heterojunctions is one of the most widely used stra...
TiO2 and WO3 based nanomaterials are highly attractive for various applications encompassing photoca...
This study describes the synthesis of TiO2/WO3 composite systems with a varying concentration of WO3...
High aspect ratio of WO3-loaded TiO2 nanotube arrays have been successfully synthesized using the el...
Aiming at producing photocatalysts with minimized photoproduced electron - hole pairs recombination,...
Coupled titanium dioxide-tungsten oxide array surface was used to remove methyl orange from water by...
© 2018 The Royal Society of Chemistry and Owner Societies. A metal oxide-heterojunction photocatalys...
[[abstract]]This study reports the preparation of microporous TiO2-WO3/TiO2 films with a high surfac...
WO3/TiO2 nanotube array electrode was fabricated by incorporating WO3 with TiO2 nanotube array via a...
TiO2/WO3 mixed metal oxide is used in the present work as an anode for the photoelectrosplitting of ...
TiO2-WO3 photocatalysts were prepared in a vacuum evaporator by impregnation of TiO2 with WO2 dissol...
Novel WO3/TiO2 microrods and microplates are prepared by simple precipitation and calcination proces...
In the last few decades, TiO2 has been widely used in different types of photocatalytic applications...
In this study, the W18O49 nanowire bundles were grown on the surface of nanoporous TiO2 sphere by a ...
The use of sunlight for photocatalytic oxidation is an ideal strategy, but it is limited by factors ...
Coupling TiO2 with WO3 to develop photocatalytic heterojunctions is one of the most widely used stra...
TiO2 and WO3 based nanomaterials are highly attractive for various applications encompassing photoca...
This study describes the synthesis of TiO2/WO3 composite systems with a varying concentration of WO3...
High aspect ratio of WO3-loaded TiO2 nanotube arrays have been successfully synthesized using the el...
Aiming at producing photocatalysts with minimized photoproduced electron - hole pairs recombination,...
Coupled titanium dioxide-tungsten oxide array surface was used to remove methyl orange from water by...
© 2018 The Royal Society of Chemistry and Owner Societies. A metal oxide-heterojunction photocatalys...
[[abstract]]This study reports the preparation of microporous TiO2-WO3/TiO2 films with a high surfac...
WO3/TiO2 nanotube array electrode was fabricated by incorporating WO3 with TiO2 nanotube array via a...
TiO2/WO3 mixed metal oxide is used in the present work as an anode for the photoelectrosplitting of ...
TiO2-WO3 photocatalysts were prepared in a vacuum evaporator by impregnation of TiO2 with WO2 dissol...
Novel WO3/TiO2 microrods and microplates are prepared by simple precipitation and calcination proces...
In the last few decades, TiO2 has been widely used in different types of photocatalytic applications...
In this study, the W18O49 nanowire bundles were grown on the surface of nanoporous TiO2 sphere by a ...