Using electrochemical charge injection, the fluorescence lifetimes of negatively charged core/shell CdTe/CdSe QDs are measured as a function of core size and shell thickness. It is found that the ensemble negative trion lifetimes reach a maximum (∼4.5 ns) for an intermediate shell thickness. This leads to the smallest particles (∼4.5 nm) with the brightest trion to date. Single dot measurements show that the negative charge suppresses blinking and that the trion can be as bright as the exciton at room temperature. In contrast, the biexciton lifetimes remain short and exhibit only a monotonous increase with shell thickness, showing no correlation with the negative trion decays. The suppression of the Auger process in small negatively charged...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Currently, the most common way to reduce blinking in quantum dots (QDs) is accomplished by using ver...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...
Thin shell CdSe/CdS colloidal quantum dots with a small 3 nm core diameter exhibit typical blinking ...
We examine the effects of CdS shell growth on photochemical reduction of colloidal CdSe quantum dots...
Charged exciton states commonly occur both in spectroscopic studies of quantum dots (QDs) and during...
Auger recombination is the main non-radiative decay pathway for multi-carrier states of colloidal qu...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Colloidally synthesized, 0D semiconductor nanocrystals, also referred to as Quantum Dots (QDs), are ...
Alloyed CdSeS nanocrystals allow tuning between the CdSe and CdS band edges while remaining relative...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...
Having already achieved near-unity quantum yields, with promising properties for light-emitting diod...
We calculate the recombination energies and probabilities of neutral excitons (X), singly charged ex...
Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is o...
Colloidal quantum dots (QDs) have been widely studied for nanophotonics and bioimaging applications...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Currently, the most common way to reduce blinking in quantum dots (QDs) is accomplished by using ver...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...
Thin shell CdSe/CdS colloidal quantum dots with a small 3 nm core diameter exhibit typical blinking ...
We examine the effects of CdS shell growth on photochemical reduction of colloidal CdSe quantum dots...
Charged exciton states commonly occur both in spectroscopic studies of quantum dots (QDs) and during...
Auger recombination is the main non-radiative decay pathway for multi-carrier states of colloidal qu...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Colloidally synthesized, 0D semiconductor nanocrystals, also referred to as Quantum Dots (QDs), are ...
Alloyed CdSeS nanocrystals allow tuning between the CdSe and CdS band edges while remaining relative...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...
Having already achieved near-unity quantum yields, with promising properties for light-emitting diod...
We calculate the recombination energies and probabilities of neutral excitons (X), singly charged ex...
Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is o...
Colloidal quantum dots (QDs) have been widely studied for nanophotonics and bioimaging applications...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Currently, the most common way to reduce blinking in quantum dots (QDs) is accomplished by using ver...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...