Photoelectrochemical water splitting is a promising approach for the carbon‐free production of hydrogen using sunlight. Here, robust and efficient WO3 photoanodes for water oxidation were synthesized by the scalable one‐step flame synthesis of nanoparticle aerosols and direct gas‐phase deposition. Nanostructured WO3 films with tunable thickness and band gap and controllable porosity were fabricated by controlling the aerosol deposition time, concentration, and temperature. Optimal WO3 films demonstrate superior water oxidation performance, reaching a current density of 0.91 mA at 1.24 V vs. reversible hydrogen electrode (RHE) and an incident photon‐to‐current conversion efficiency (IPCE) of ca. 61 % at 360 nm in 0.1 m H2SO4. Notably, it is ...
[EN] The rich and complex chemistry of tungsten was employed to synthesize innovative WO3 nanoplatel...
We report direct photocatalytic hydrogen evolution from substoichiometric highly reduced tungsten ox...
The synthesis of nanostructured materials with controlled shape without using a capping agent and/or...
Solar water splitting is a promising solution for the renewable production of hydrogen as an energy ...
In this work, we present a systematic study on the synthesis of monoclinic gamma - WO3 obtained usin...
Semiconductor photocatalysts have been used for water splitting for several decades. By utilizing so...
Photoelectrochemical water splitting cells could offer a simple, yet efficient approach to solar hyd...
The development of efficient and stable photoelectrodes keeps on being critical in the implementatio...
Helium (He)-induced nanostructured tungsten sheets were synthesized by He plasma irradiation under d...
Oxygen vacancies are common to most metal oxides, whether intentionally incorporated or otherwise, a...
Nano- and micro-structured tungsten trioxide (WO3) photoelectrode films were prepared through an aqu...
This work demonstrates the ability of nanoporous carbons to boost the photoelectrochemical activity ...
From IOP Publishing via Jisc Publications RouterHistory: received 2020-12-21, rev-recd 2021-04-07, o...
The nanotube array-like WO3 (WA) photoanode has been widely utilized in solar-driven photoelectrocat...
The focus of this thesis is the exploitation of various types of photoelectrodes based on nanostruc...
[EN] The rich and complex chemistry of tungsten was employed to synthesize innovative WO3 nanoplatel...
We report direct photocatalytic hydrogen evolution from substoichiometric highly reduced tungsten ox...
The synthesis of nanostructured materials with controlled shape without using a capping agent and/or...
Solar water splitting is a promising solution for the renewable production of hydrogen as an energy ...
In this work, we present a systematic study on the synthesis of monoclinic gamma - WO3 obtained usin...
Semiconductor photocatalysts have been used for water splitting for several decades. By utilizing so...
Photoelectrochemical water splitting cells could offer a simple, yet efficient approach to solar hyd...
The development of efficient and stable photoelectrodes keeps on being critical in the implementatio...
Helium (He)-induced nanostructured tungsten sheets were synthesized by He plasma irradiation under d...
Oxygen vacancies are common to most metal oxides, whether intentionally incorporated or otherwise, a...
Nano- and micro-structured tungsten trioxide (WO3) photoelectrode films were prepared through an aqu...
This work demonstrates the ability of nanoporous carbons to boost the photoelectrochemical activity ...
From IOP Publishing via Jisc Publications RouterHistory: received 2020-12-21, rev-recd 2021-04-07, o...
The nanotube array-like WO3 (WA) photoanode has been widely utilized in solar-driven photoelectrocat...
The focus of this thesis is the exploitation of various types of photoelectrodes based on nanostruc...
[EN] The rich and complex chemistry of tungsten was employed to synthesize innovative WO3 nanoplatel...
We report direct photocatalytic hydrogen evolution from substoichiometric highly reduced tungsten ox...
The synthesis of nanostructured materials with controlled shape without using a capping agent and/or...