International audienceApart from being key structures of modern microelectronics, metal-insulator-semiconductor (MIS) junctions are highly promising electrodes for artificial leaves, i.e. photoelectrochemical cells that can convert sunlight into energy-rich fuels. Here, we demonstrate that homogeneous Si/SiO x /Ni MIS junctions, employed as photoanodes, can be functionalized with a redox-active species and simultaneously converted into high-photovoltage inhomogeneous MIS junctions by electrochemical dissolution. We also report on the considerable enhancement of performance towards urea oxidation, induced by this process. Finally, we demonstrate that both phenomena can be employed synergistically to design highly-efficient Si-based photoanod...
As is obvious from previous work on semiconductor photoelectrochemistry, single junction semiconduct...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
ConspectusThe electrochemical conversion of sunlight by photoelectrochemical cells (PECs) is based o...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
International audienceMetal–insulator–semiconductor (MIS) junctions based on n-Si have proven to be ...
Authors demonstrate Si-based MIS photoanodes using Al thin-film reactions to create localized conduc...
Photoelectrochemical water splitting represents a promising method for providing clean, renewable en...
International audienceEnabling Si to perform solar photoelectrocatalysis is a tedious task due to it...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
International audienceH-2 is an ideal energy carrier because it has a high energy density, and it ca...
A metal-insulator-semiconductor (MIS) structure based on an inhomogeneous junction has been recently...
Photoelectrochemical (PEC) cells enable the conversion of solar energy into storable fuels, which is...
The photoanodes with heterojunetion behavior could enable the development of solar energy conversion...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
International audienceA metal–insulator–semiconductor (MIS) structure based on an inhomogeneous junc...
As is obvious from previous work on semiconductor photoelectrochemistry, single junction semiconduct...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
ConspectusThe electrochemical conversion of sunlight by photoelectrochemical cells (PECs) is based o...
Solar-assisted water splitting can potentially provide an efficient route for large-scale renewable ...
International audienceMetal–insulator–semiconductor (MIS) junctions based on n-Si have proven to be ...
Authors demonstrate Si-based MIS photoanodes using Al thin-film reactions to create localized conduc...
Photoelectrochemical water splitting represents a promising method for providing clean, renewable en...
International audienceEnabling Si to perform solar photoelectrocatalysis is a tedious task due to it...
Affordable solar water splitting is considered the “Holy Grail” to transition our current hydrocarbo...
International audienceH-2 is an ideal energy carrier because it has a high energy density, and it ca...
A metal-insulator-semiconductor (MIS) structure based on an inhomogeneous junction has been recently...
Photoelectrochemical (PEC) cells enable the conversion of solar energy into storable fuels, which is...
The photoanodes with heterojunetion behavior could enable the development of solar energy conversion...
International audienceSilicon (Si) is a prime candidate for manufacturing water-splitting photoelect...
International audienceA metal–insulator–semiconductor (MIS) structure based on an inhomogeneous junc...
As is obvious from previous work on semiconductor photoelectrochemistry, single junction semiconduct...
Silicon photoanodes have been studied intensively for efficient photoelectrochemical (PEC)-mediated ...
ConspectusThe electrochemical conversion of sunlight by photoelectrochemical cells (PECs) is based o...