In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of hydrophobic semiconductor nanocrystals (or quantum dots, QDs) in monodisperse silica spheres (diameter ∼35 nm) by a water-in-oil (W/O) reverse microemulsion synthesis. Fluorescence spectroscopy is used to investigate the rapid ligand exchange that takes place at the QD surface upon addition of the various synthesis reactants. It is found that hydrolyzed TEOS has a high affinity for the QD surface and replaces the hydrophobic amine ligands, which enables the transfer of the QDs to the hydrophilic interior of the micelles where silica growth takes place. By hindering the ligand exchange using stronger binding thiol ligands, the position of the...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
Colloidal semiconductor quantum dots (QDs) have been extensively investigated due to their attractiv...
Following on from our previous investigations, fluorescent core/shell CdTe@SiO particles were prepar...
In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of...
In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of...
We present a simple yet versatile method for encapsulating water-dispersed quantum dots (QDs) in a s...
Quantum dots (QDs) are fluorescent nanocrystals extensively used today in research and applications....
Here we report the facile strategies for synthesis of silica-coated quantum dots (QDs). Due to their...
Here we report the facile strategies for synthesis of silica-coated quantum dots (QDs). Due to their...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
Abstract—A new generation of silica encapsulated single quantum dots (QDs) was synthesized based on ...
The present study describes a stabilization of single quantum dot (QD) micelles by a "hydrophobic" s...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
Colloidal semiconductor quantum dots (QDs) have been extensively investigated due to their attractiv...
Following on from our previous investigations, fluorescent core/shell CdTe@SiO particles were prepar...
In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of...
In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of...
We present a simple yet versatile method for encapsulating water-dispersed quantum dots (QDs) in a s...
Quantum dots (QDs) are fluorescent nanocrystals extensively used today in research and applications....
Here we report the facile strategies for synthesis of silica-coated quantum dots (QDs). Due to their...
Here we report the facile strategies for synthesis of silica-coated quantum dots (QDs). Due to their...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
Abstract—A new generation of silica encapsulated single quantum dots (QDs) was synthesized based on ...
The present study describes a stabilization of single quantum dot (QD) micelles by a "hydrophobic" s...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Silica nanoparticles for controlled release applications have been produced by the reaction of tetra...
Semiconductor quantum dots (QDs), particles several nanometers in diameter, exhibit a range of inter...
Colloidal semiconductor quantum dots (QDs) have been extensively investigated due to their attractiv...
Following on from our previous investigations, fluorescent core/shell CdTe@SiO particles were prepar...