The performance of silicon for water oxidation and hydrogen production can be improved by exploiting the antireflective properties of nanostructured silicon substrates. In this work, silicon nanowires were fabricated by metal-assisted electroless etching of silicon. An enhanced photocurrent density of −17 mA/cm2 was observed for the silicon nanowires coated with an iron sulphur carbonyl catalyst when compared to bare silicon nanowires (−5 mA/cm2). A substantial amount of 315 µmol/h hydrogen gas was produced at low bias potentials for the silicon nanowires coated with an iron sulphur carbonyl catalyst
The silicon-based photoelectrochemical (PEC) conversion system has recently gained attention owing t...
The silicon-based photoelectrochemical (PEC) conversion system has recently gained attention owing t...
Photoelectrochemistry is one of several promising approaches for the realization of efficient solar-...
The performance of silicon for water oxidation and hydrogen production can be improved by exploiting...
Herein we report that silicon nanowires (SiNWs) fabricated via metal-catalyzed electroless etching y...
Modification of p-type Si surface by active and stable earth-abundant electrocatalysts is an effecti...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
The origin of the photocurrent enhancement and the overpotential reduction in solar water splitting ...
Efficient light stimulated hydrogen generation from top down produced highly doped n type silicon na...
Efficient light stimulated hydrogen generation from top down produced highly doped n type silicon na...
Efficient light stimulated hydrogen generation from top down produced highly doped n type silicon na...
The silicon-based photoelectrochemical (PEC) conversion system has recently gained attention owing t...
The silicon-based photoelectrochemical (PEC) conversion system has recently gained attention owing t...
Photoelectrochemistry is one of several promising approaches for the realization of efficient solar-...
The performance of silicon for water oxidation and hydrogen production can be improved by exploiting...
Herein we report that silicon nanowires (SiNWs) fabricated via metal-catalyzed electroless etching y...
Modification of p-type Si surface by active and stable earth-abundant electrocatalysts is an effecti...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
International audiencePhotoelectrochemical water splitting is a sustainable and environmentally frie...
The origin of the photocurrent enhancement and the overpotential reduction in solar water splitting ...
Efficient light stimulated hydrogen generation from top down produced highly doped n type silicon na...
Efficient light stimulated hydrogen generation from top down produced highly doped n type silicon na...
Efficient light stimulated hydrogen generation from top down produced highly doped n type silicon na...
The silicon-based photoelectrochemical (PEC) conversion system has recently gained attention owing t...
The silicon-based photoelectrochemical (PEC) conversion system has recently gained attention owing t...
Photoelectrochemistry is one of several promising approaches for the realization of efficient solar-...