Hematite (α-Fe<sub>2</sub>O<sub>3</sub>) was grown on vertically aligned Si nanowires (NWs) using atomic layer deposition to form a dual-absorber system. Si NWs absorb photons that are transparent to hematite (600 nm < λ < 1100 nm) and convert the energy into additional photovoltage to assist photoelectrochemical (PEC) water splitting by hematite. Compared with hematite-only photoelectrodes, those with Si NWs exhibited a photocurrent turn-on potential as low as 0.6 V vs RHE. This result represents one of the lowest turn-on potentials observed for hematite-based PEC water splitting systems. It addresses a critical challenge of using hematite for PEC water splitting, namely, the fact that the band-edge positions are too positive for high-effi...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
Photoelectrochemical water splitting has gained considerable interest in the past few decades becaus...
The concept of hybrid tandem device structures that combine metal oxides with thin‐film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Solar energy is an efficient source that provides enough power for all global energy demands if it c...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
The poor internal quantum efficiency (IQE) arising from high recombination and insufficient absorpti...
*S Supporting Information ABSTRACT: Photoelectrochemical (PEC) solar water split-ting represents a c...
One of the greatest issues facing society today is finding a renewable energy source to power our wo...
We report the facile fabrication of three-dimensional (3D) silicon/hematite core/shell nanowire arra...
Thermal oxidation of Fe to nanostructured hematite (wires, flakes) is currently widely investigated ...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
We report a new strategy for efficient suppression of electron-hole recombination in hematite photoa...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
Photoelectrochemical water splitting has gained considerable interest in the past few decades becaus...
The concept of hybrid tandem device structures that combine metal oxides with thin‐film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Solar energy is an efficient source that provides enough power for all global energy demands if it c...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
The poor internal quantum efficiency (IQE) arising from high recombination and insufficient absorpti...
*S Supporting Information ABSTRACT: Photoelectrochemical (PEC) solar water split-ting represents a c...
One of the greatest issues facing society today is finding a renewable energy source to power our wo...
We report the facile fabrication of three-dimensional (3D) silicon/hematite core/shell nanowire arra...
Thermal oxidation of Fe to nanostructured hematite (wires, flakes) is currently widely investigated ...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
We report a new strategy for efficient suppression of electron-hole recombination in hematite photoa...
Solar hydrogen has the potential to replace fossil fuels with a sustainable energy carrier that can ...
Photoelectrochemical water splitting has gained considerable interest in the past few decades becaus...
The concept of hybrid tandem device structures that combine metal oxides with thin‐film semiconducti...