Quantum dot sensitized solar cells (QDSCs) are receiving a lot of attention as promising third generation solar cells, being virtually all of them based on sensitized photoanodes. Finding efficient QD-sensitized photocathodes would pave the way toward the implementation of tandem QDSCs. In this context, NiO photocathodes have been sensitized with colloidal CdSe quantum dots directly attached to the semiconductor oxide surface. The emission spectra indicate effective hole injection from the excited state of the quantum dots to the valence band of the NiO. A maximum incident current to photon conversion efficiency of 17% at 420 nm has been achieved. For the sake of comparison, other ways to prepare and anchor the QDs have been tested. Sensiti...
Quantum dot (QD) sensitized NiO photocathodes rely on efficient photoinduced hole injection into the...
With growing global energy demand there will be an increased need for sources of renewable energy su...
Semiconductor quantum dots exhibit unique optical characteristics such as their size-dependent band ...
Significantly improved charge-collection efficiencies result from a general chemical approach to syn...
Hybrid materials combining a wide bandgap metal oxide semiconductor, metal chalcogenide nanocrystals...
Abstract In this study, a uniform nanoporous NiO film, with a thickness of up to 2.6 μm, was prepare...
Quantum dots (QDs) are very attractive materials for solar cells due to their high absorption coeffi...
The design of active photocathodes for the hydrogen evolution reaction (HER) is a crucial step in th...
Quantum dot sensitized solar cells (QDSCs) have attracted significant attention as promising third-g...
A novel assembly of a photocathode and a photoanode is investigated to explore their complementary e...
Quantum dot sensitized solar cells (QDSC) are gaining attention as they show promise towards the dev...
The procedure employed for the sensitization of mesoporous photoanodes affects strongly the final pe...
The procedure employed for the sensitization of mesoporous photoanodes affects strongly the final pe...
Here we analyze the effect of two relevant aspects related to cell preparation on quantum dot sensit...
A novel assembly of a photocathode and photoanode is investigated to explore their complementary eff...
Quantum dot (QD) sensitized NiO photocathodes rely on efficient photoinduced hole injection into the...
With growing global energy demand there will be an increased need for sources of renewable energy su...
Semiconductor quantum dots exhibit unique optical characteristics such as their size-dependent band ...
Significantly improved charge-collection efficiencies result from a general chemical approach to syn...
Hybrid materials combining a wide bandgap metal oxide semiconductor, metal chalcogenide nanocrystals...
Abstract In this study, a uniform nanoporous NiO film, with a thickness of up to 2.6 μm, was prepare...
Quantum dots (QDs) are very attractive materials for solar cells due to their high absorption coeffi...
The design of active photocathodes for the hydrogen evolution reaction (HER) is a crucial step in th...
Quantum dot sensitized solar cells (QDSCs) have attracted significant attention as promising third-g...
A novel assembly of a photocathode and a photoanode is investigated to explore their complementary e...
Quantum dot sensitized solar cells (QDSC) are gaining attention as they show promise towards the dev...
The procedure employed for the sensitization of mesoporous photoanodes affects strongly the final pe...
The procedure employed for the sensitization of mesoporous photoanodes affects strongly the final pe...
Here we analyze the effect of two relevant aspects related to cell preparation on quantum dot sensit...
A novel assembly of a photocathode and photoanode is investigated to explore their complementary eff...
Quantum dot (QD) sensitized NiO photocathodes rely on efficient photoinduced hole injection into the...
With growing global energy demand there will be an increased need for sources of renewable energy su...
Semiconductor quantum dots exhibit unique optical characteristics such as their size-dependent band ...