Solar-to-hydrogen generation is a promising approach to generate clean and renewable fuel. Nanohybrid structures such as CdSe@CdS-Pt nanorods were found favorable for this task (attaining 100% photon-to-hydrogen production efficiency); yet the rods cannot support overall water splitting. The key limitation seems to be the rate of hole extraction from the semiconductor, jeopardizing both activity and stability. It is suggested that hole extraction might be improved via tuning the rod’s dimensions, specifically the width of the CdS shell around the CdSe seed in which the holes reside. In this contribution, we successfully attain atomic-scale control over the width of CdSe@CdS nanorods, which enables us to verify this hypothesis and explore th...
Photocorrosion and low solar conversion efficiency hindered widely applications of CdS in photocatal...
To better understand the role nanoscale heterojunctions play in the photocatalytic generation of hyd...
ABSTRACT: Enhanced plasmonic fields are a promising way to increase the efficiency of photocatalytic...
Solar-to-hydrogen generation is a promising approach to generate clean and renewable fuel. Nanohybri...
Semiconductor–metal nanoheterostructures, such as CdSe/CdS dot-in-rod nanorods with a Pt tip at one ...
We report the design of a multicomponent nanoheterostructure aimed at photocatalytic production of h...
Cadmium chalcogenide nanocrystals combined with co-catalyst nanoparticles hold promise for efficient...
In the present work, we focused on geometrical (single- or double-tipped) and compositional (Pt or A...
Light-driven hydrogen production using semiconductor photocatalysts has gained much interest owing t...
In the present work, we focused on geometrical (single- or double-tipped) and compositional (Pt or A...
Nanocrystalline materials are widely employed as photocatalysts for water splitting applications. In...
We report that the internal quantum efficiency for hydrogen generation in spherical, Pt-decorated Cd...
In the present work, we focused on geometrical (single- or double-tipped) and compositional (Pt or A...
Development of novel low price porous nanostructures with robust photocatalytic hydrogen generation ...
The photocatalytic H<sub>2</sub>O splitting activities of CdSe and CdSe/CdS core/shell quantum dots ...
Photocorrosion and low solar conversion efficiency hindered widely applications of CdS in photocatal...
To better understand the role nanoscale heterojunctions play in the photocatalytic generation of hyd...
ABSTRACT: Enhanced plasmonic fields are a promising way to increase the efficiency of photocatalytic...
Solar-to-hydrogen generation is a promising approach to generate clean and renewable fuel. Nanohybri...
Semiconductor–metal nanoheterostructures, such as CdSe/CdS dot-in-rod nanorods with a Pt tip at one ...
We report the design of a multicomponent nanoheterostructure aimed at photocatalytic production of h...
Cadmium chalcogenide nanocrystals combined with co-catalyst nanoparticles hold promise for efficient...
In the present work, we focused on geometrical (single- or double-tipped) and compositional (Pt or A...
Light-driven hydrogen production using semiconductor photocatalysts has gained much interest owing t...
In the present work, we focused on geometrical (single- or double-tipped) and compositional (Pt or A...
Nanocrystalline materials are widely employed as photocatalysts for water splitting applications. In...
We report that the internal quantum efficiency for hydrogen generation in spherical, Pt-decorated Cd...
In the present work, we focused on geometrical (single- or double-tipped) and compositional (Pt or A...
Development of novel low price porous nanostructures with robust photocatalytic hydrogen generation ...
The photocatalytic H<sub>2</sub>O splitting activities of CdSe and CdSe/CdS core/shell quantum dots ...
Photocorrosion and low solar conversion efficiency hindered widely applications of CdS in photocatal...
To better understand the role nanoscale heterojunctions play in the photocatalytic generation of hyd...
ABSTRACT: Enhanced plasmonic fields are a promising way to increase the efficiency of photocatalytic...