Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable energy conversion and storage. It is essential for such a system to provide a sufficiently high photocurrent and photovoltage to drive the water oxidation reaction. Here we demonstrate a photoanode that is capable of achieving a high photovoltage by engineering the interfacial energetics of metal-insulator-semiconductor junctions. We evaluate the importance of using two metals to decouple the functionalities for a Schottky contact and a highly efficient catalyst. We also illustrate the improvement of the photovoltage upon incidental oxidation of the metallic surface layer in KOH solution. Additionally, we analyse the role of the thin insulati...
The semiconductor-liquid junction (SCLJ), the dominant place in photoelectrochemical (PEC) catalysis...
The present review rationalizes the significance of the metal oxide semiconductor (MOS) interfaces i...
Authors demonstrate Si-based MIS photoanodes using Al thin-film reactions to create localized conduc...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
Metal-insulator-semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Harvesting sunlight, the ultimate renewable power source, in a cost-effective way has been long reco...
International audienceApart from being key structures of modern microelectronics, metal-insulator-se...
Photoelectrochemical water splitting represents a promising method for providing clean, renewable en...
The photoanodes with heterojunetion behavior could enable the development of solar energy conversion...
Efficient photovoltaic tandem cells made of III-V semiconductors open a promising way for the realiz...
Protective insulating layers between a semiconductor and an electrocatalyst enable otherwise unstabl...
Direct photon to chemical energy conversion using semiconductor-electrocatalyst-electrolyte interfac...
Semiconductor|liquid junctions are a critical component of photoelectrochemical (PEC) devices for th...
International audienceWidely investigated in the 70’s and 80’s, photo-electrochemistry of semiconduc...
The semiconductor-liquid junction (SCLJ), the dominant place in photoelectrochemical (PEC) catalysis...
The present review rationalizes the significance of the metal oxide semiconductor (MOS) interfaces i...
Authors demonstrate Si-based MIS photoanodes using Al thin-film reactions to create localized conduc...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
Metal-insulator-semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Harvesting sunlight, the ultimate renewable power source, in a cost-effective way has been long reco...
International audienceApart from being key structures of modern microelectronics, metal-insulator-se...
Photoelectrochemical water splitting represents a promising method for providing clean, renewable en...
The photoanodes with heterojunetion behavior could enable the development of solar energy conversion...
Efficient photovoltaic tandem cells made of III-V semiconductors open a promising way for the realiz...
Protective insulating layers between a semiconductor and an electrocatalyst enable otherwise unstabl...
Direct photon to chemical energy conversion using semiconductor-electrocatalyst-electrolyte interfac...
Semiconductor|liquid junctions are a critical component of photoelectrochemical (PEC) devices for th...
International audienceWidely investigated in the 70’s and 80’s, photo-electrochemistry of semiconduc...
The semiconductor-liquid junction (SCLJ), the dominant place in photoelectrochemical (PEC) catalysis...
The present review rationalizes the significance of the metal oxide semiconductor (MOS) interfaces i...
Authors demonstrate Si-based MIS photoanodes using Al thin-film reactions to create localized conduc...