Nanoporous tungsten oxide (WO3) films have been widely applied in gasochromic and electrochromic windows due to their high hydrogen diffusion ability. However, a high annealing temperature is required to remove the organic template, which may also collapse the structure of the functional materials. As a photocatalyst, the electron holes in the valence band of WO3 generated after UV irradiation exhibit a high oxidation activity and can degrade organic materials. Here, nanoporous WO3 films with pore sizes ranging from 10 to 16 nm were prepared through sol–gel methods with poly(ethylene glycol)-block-poly(propylene glycol)-block-poly(ethylene glycol) (P123) as an organic template and WO3 as a photocatalytic assistant after UV radiation trea...
We have investigated the formation of highly porous nanostructured tungsten trioxide (WO3) films of ...
Multilayered WO3 nanosquare platelet films were successfully grown on transparent TCO substrates by ...
Tungsten trioxide (WO3) has been demonstrated to possess visible light photoactivity and presents a ...
We report an efficient solar-light-driven photocatalyst based on three-dimensional nanoporous tungst...
We report an efficient solar-light-driven photocatalyst based on three-dimensional nanoporous tungst...
We report an efficient solar-light-driven photocatalyst based on three-dimensional nanoporous tungst...
Tungsten oxide (WO3) is one of the most promising materials for electrochromic devices. WO3 thin fil...
Thin, porous films of WO3 were fabricated by solution-based synthesis via spin-coating using polyeth...
WO3 films are the most widely used electrochromic functional layers. It is known that WO3 films prep...
We demonstrate that a three dimensional (3D) crystalline tungsten trioxide (WO3 ) nanoporous network...
Multilayered WO3 nanosquare platelet films were successfully grown on transparent TCO substrates by ...
A compact and nanoporous structured WO3 film was prepared by electrodeposition. For a nanoporous str...
AbstractTransparent WO3 films were successively prepared by sol–gel casting method. Their optical an...
The preparation of mesoporous tungsten trioxide from tungstic acid and tungstic hexaethoxide precurs...
Abstract: Mesoporous WO3 films have been prepared from the sol-gel method. Modification of the prepa...
We have investigated the formation of highly porous nanostructured tungsten trioxide (WO3) films of ...
Multilayered WO3 nanosquare platelet films were successfully grown on transparent TCO substrates by ...
Tungsten trioxide (WO3) has been demonstrated to possess visible light photoactivity and presents a ...
We report an efficient solar-light-driven photocatalyst based on three-dimensional nanoporous tungst...
We report an efficient solar-light-driven photocatalyst based on three-dimensional nanoporous tungst...
We report an efficient solar-light-driven photocatalyst based on three-dimensional nanoporous tungst...
Tungsten oxide (WO3) is one of the most promising materials for electrochromic devices. WO3 thin fil...
Thin, porous films of WO3 were fabricated by solution-based synthesis via spin-coating using polyeth...
WO3 films are the most widely used electrochromic functional layers. It is known that WO3 films prep...
We demonstrate that a three dimensional (3D) crystalline tungsten trioxide (WO3 ) nanoporous network...
Multilayered WO3 nanosquare platelet films were successfully grown on transparent TCO substrates by ...
A compact and nanoporous structured WO3 film was prepared by electrodeposition. For a nanoporous str...
AbstractTransparent WO3 films were successively prepared by sol–gel casting method. Their optical an...
The preparation of mesoporous tungsten trioxide from tungstic acid and tungstic hexaethoxide precurs...
Abstract: Mesoporous WO3 films have been prepared from the sol-gel method. Modification of the prepa...
We have investigated the formation of highly porous nanostructured tungsten trioxide (WO3) films of ...
Multilayered WO3 nanosquare platelet films were successfully grown on transparent TCO substrates by ...
Tungsten trioxide (WO3) has been demonstrated to possess visible light photoactivity and presents a ...