International audienceA metal–insulator–semiconductor (MIS) structure based on an inhomogeneous junction has been recently proven to be highly efficient at photoelectrochemical (PEC) water oxidation. Engineering the surrounding layer of the MIS nanojunction is crucial to maximizing the photovoltage. Specifically, for an n-type photoanode, a high work-function material is required to create a large Schottky barrier that assists the hole transfer to oxidize water while blocking the electron transfer. Normally, the surrounding layer is a native oxidized phase of the metal layer that forms unintentionally. Herein, we demonstrate the use of copper(I) thiocyanate (CuSCN), a transparent p-type coordination polymer semiconductor with a high work fu...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
Metal–insulator–semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
International audienceA metal–insulator–semiconductor (MIS) structure based on an inhomogeneous junc...
A metal-insulator-semiconductor (MIS) structure based on an inhomogeneous junction has been recently...
International audienceApart from being key structures of modern microelectronics, metal-insulator-se...
The photoanodes with heterojunetion behavior could enable the development of solar energy conversion...
Photoelectrochemical (PEC) cells enable the conversion of solar energy into storable fuels, which is...
We investigated CuWO<sub>4</sub> as a promising photoanode and its surface functionalization with Ag...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
Metal-insulator-semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Protective insulating layers between a semiconductor and an electrocatalyst enable otherwise unstabl...
\u3cp\u3eMetal oxide/Si heterostructures make up an exciting design route to high-performance electr...
Semiconductor|liquid junctions are a critical component of photoelectrochemical (PEC) devices for th...
Copper thiocyanate (CuSCN) is known as a promising hole transport layer in organic photovoltaics (OP...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
Metal–insulator–semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
International audienceA metal–insulator–semiconductor (MIS) structure based on an inhomogeneous junc...
A metal-insulator-semiconductor (MIS) structure based on an inhomogeneous junction has been recently...
International audienceApart from being key structures of modern microelectronics, metal-insulator-se...
The photoanodes with heterojunetion behavior could enable the development of solar energy conversion...
Photoelectrochemical (PEC) cells enable the conversion of solar energy into storable fuels, which is...
We investigated CuWO<sub>4</sub> as a promising photoanode and its surface functionalization with Ag...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
Metal-insulator-semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Protective insulating layers between a semiconductor and an electrocatalyst enable otherwise unstabl...
\u3cp\u3eMetal oxide/Si heterostructures make up an exciting design route to high-performance electr...
Semiconductor|liquid junctions are a critical component of photoelectrochemical (PEC) devices for th...
Copper thiocyanate (CuSCN) is known as a promising hole transport layer in organic photovoltaics (OP...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
Metal–insulator–semiconductor (MIS) photoelectrodes offer a simple alternative to the traditional se...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...