Authors demonstrate Si-based MIS photoanodes using Al thin-film reactions to create localized conduction paths through the insulator and Ni electrodeposition to form metal catalyst islands. These approaches yielded low onset potential, high saturation current density, and excellent stability
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
We present a study of a transition metal oxide composite modified n-Si photoanode for efficient and ...
It is beneficial to reduce thickness of high-purity of c-Siwafer for cost-effective water splitting ...
The ultrathin insulator layer in the silicon metal–insulator–semiconductor (MIS) photoanode plays im...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
International audienceApart from being key structures of modern microelectronics, metal-insulator-se...
A new passivation strategy for an oxygen evolving Si photoanode for efficient and stable photoelectr...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
International audienceH-2 is an ideal energy carrier because it has a high energy density, and it ca...
Small-band-gap (Eg < 2 eV) semiconductors must be stabilized for use in integrated devices that c...
Semiconductors with small band gaps (<2 eV) must be stabilized against corrosion or passivation in a...
International audienceWe report a new design for water-splitting photoanodes, based on a highly abso...
International audienceMetal–insulator–semiconductor (MIS) junctions based on n-Si have proven to be ...
A metal-insulator-semiconductor (MIS) structure based on an inhomogeneous junction has been recently...
International audiencePhotoelectrochemical water splitting under harsh chemical conditions can be pr...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
We present a study of a transition metal oxide composite modified n-Si photoanode for efficient and ...
It is beneficial to reduce thickness of high-purity of c-Siwafer for cost-effective water splitting ...
The ultrathin insulator layer in the silicon metal–insulator–semiconductor (MIS) photoanode plays im...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
International audienceApart from being key structures of modern microelectronics, metal-insulator-se...
A new passivation strategy for an oxygen evolving Si photoanode for efficient and stable photoelectr...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
International audienceH-2 is an ideal energy carrier because it has a high energy density, and it ca...
Small-band-gap (Eg < 2 eV) semiconductors must be stabilized for use in integrated devices that c...
Semiconductors with small band gaps (<2 eV) must be stabilized against corrosion or passivation in a...
International audienceWe report a new design for water-splitting photoanodes, based on a highly abso...
International audienceMetal–insulator–semiconductor (MIS) junctions based on n-Si have proven to be ...
A metal-insulator-semiconductor (MIS) structure based on an inhomogeneous junction has been recently...
International audiencePhotoelectrochemical water splitting under harsh chemical conditions can be pr...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
We present a study of a transition metal oxide composite modified n-Si photoanode for efficient and ...
It is beneficial to reduce thickness of high-purity of c-Siwafer for cost-effective water splitting ...