Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Hybrid Au–CdSe and Ag–CdSe Nanoflowers and Core–Shell Nanocrystals via One‐Pot Heterogeneous Nucleation and Growth

View through CrossRef
AbstractA general approach, based on heterogeneous nucleation and growth of CdSe nanostructures on Au or Ag nanocrystals, for the synthesis of Au–CdSe and Ag–CdSe hybrid nanostructures is developed. The new approach provides a versatile one‐pot route for the synthesis of hybrid nanoflowers consisting of a gold or silver core and multipod CdSe rods or an intact CdSe shell with controlled thickness, depending on the nucleation and growth parameters. At lower growth temperatures such as 150 °C, the CdSe clusters are adsorbed on the surface of the metal cores in their surface defects, then multiple arms and branches form, resulting in nanoflower‐shaped hybrid structures. Increasing the size of the metal core through the choice of the reducing and capping agents results in an improvement of the interface between the metal and CdSe domains, producing core–shell structures. The growth temperature appears to be the most important factor determining the nature of the interface between the metal and CdSe domains. At relatively high temperatures such as 300 °C, the formation of large, faceted Au cores creates preferential growth sites for the CdSe nanocrystalline shell, thus resulting in well‐defined Au–CdSe core–shell structures with large interfaces between the Au and CdSe domains. The present approach is expected to foster systematic studies of the electronic structures and optical properties of the metal–semiconductor hybrid materials for potential applications in photovoltaic and nanoelectronic devices.
Title: Hybrid Au–CdSe and Ag–CdSe Nanoflowers and Core–Shell Nanocrystals via One‐Pot Heterogeneous Nucleation and Growth
Description:
AbstractA general approach, based on heterogeneous nucleation and growth of CdSe nanostructures on Au or Ag nanocrystals, for the synthesis of Au–CdSe and Ag–CdSe hybrid nanostructures is developed.
The new approach provides a versatile one‐pot route for the synthesis of hybrid nanoflowers consisting of a gold or silver core and multipod CdSe rods or an intact CdSe shell with controlled thickness, depending on the nucleation and growth parameters.
At lower growth temperatures such as 150 °C, the CdSe clusters are adsorbed on the surface of the metal cores in their surface defects, then multiple arms and branches form, resulting in nanoflower‐shaped hybrid structures.
Increasing the size of the metal core through the choice of the reducing and capping agents results in an improvement of the interface between the metal and CdSe domains, producing core–shell structures.
The growth temperature appears to be the most important factor determining the nature of the interface between the metal and CdSe domains.
At relatively high temperatures such as 300 °C, the formation of large, faceted Au cores creates preferential growth sites for the CdSe nanocrystalline shell, thus resulting in well‐defined Au–CdSe core–shell structures with large interfaces between the Au and CdSe domains.
The present approach is expected to foster systematic studies of the electronic structures and optical properties of the metal–semiconductor hybrid materials for potential applications in photovoltaic and nanoelectronic devices.

Related Results

Optical Characteristics of a New Molecular Complex: “Nafion–Colloidal CdSe/CdS/ZnS Nanocrystals”
Optical Characteristics of a New Molecular Complex: “Nafion–Colloidal CdSe/CdS/ZnS Nanocrystals”
Here, the optical properties of the Nafion polymer membrane containing colloidal CdSe/CdS/ZnS nanocrystals embedded by diffusion have been studied. The CdSe/CdS/ZnS nanocrystals ha...
Synthesis and Characterisation of Metal Chalcogenide Nanocrystals
Synthesis and Characterisation of Metal Chalcogenide Nanocrystals
<p>Nanomaterials are defined as materials which possess features with dimensions of less than 100 nm. Nanocrystals are a subclass of nanomaterials, where the absolute dimensi...
Control of Membrane Luminescence Using Colloidal Nanocrystals
Control of Membrane Luminescence Using Colloidal Nanocrystals
The optical properties of the Nafion polymer membrane containing colloidal CdSe/CdS/ZnS nanocrystals embedded by diffusion have been studied. The CdSe/CdS/ZnS nanocrystals have a c...
Surface modification of CdSe-ZnS quantum dots with phospholipid from oil-seed camellia Camellia oleifera Abel.
Surface modification of CdSe-ZnS quantum dots with phospholipid from oil-seed camellia Camellia oleifera Abel.
In this work, we studied the preparation of water-dispersible fluorescent CdSe-ZnS core-shell quantum dots (QDs) using the surface modification with natural amphiphilic phospholipi...
Synthesis and Characterization of Silicon and Germanium Nanocrystals and Titanium Disulphide Nanostructures
Synthesis and Characterization of Silicon and Germanium Nanocrystals and Titanium Disulphide Nanostructures
<p>This thesis is concerned with the synthesis and characterization of nanostructured materials in the solution, in particular silicon and germanium nanocrystals, their appli...
PROFICIENT PHOTOCATALYTIC DEGRADATION OF METHYLENE BLUE DYE USING Ti-DOPED CdSe NANOPARTICLES UNDER SOLAR LIGHT IRRADIATION
PROFICIENT PHOTOCATALYTIC DEGRADATION OF METHYLENE BLUE DYE USING Ti-DOPED CdSe NANOPARTICLES UNDER SOLAR LIGHT IRRADIATION
The present analysis explores the photocatalytic activity of Ti-doped CdSe and undoped CdSe nanoparticles towards Methylene Blue (MB) dye degradation under solar light irradiation....
Biogenic ZnO Nanoflowers: As an Alternative Antibacterial Nanomedicine
Biogenic ZnO Nanoflowers: As an Alternative Antibacterial Nanomedicine
Background: Zinc oxide (ZnO) nanoparticles have been widely investigated for the development of next-generation nano-antibiotics against a broad range of microorganisms including m...
Colloidal Synthesis and Properties of InAs/InP and InAs/CdSe Core/Shell Nanocrystals
Colloidal Synthesis and Properties of InAs/InP and InAs/CdSe Core/Shell Nanocrystals
ABSTRACTHigh-temperature colloidal synthesis of InAs/InP and InAs/CdSe core/shell nanocrystal quantum dots is reported. InP and CdSe shells with several thicknesses were grown on I...

Back to Top