Charged exciton states commonly occur both in spectroscopic studies of quantum dots (QDs) and during operation of QD-based devices. The extra charge added to the neutral exciton modifies its radiative decay rate and also opens an additional nonradiative pathway associated with an Auger process whereby the recombination energy of an exciton is transferred to the excess charge. Here we conduct single-dot spectroscopic studies of Auger recombination in thick-shell (“giant”) CdSe/CdS QDs with and without an interfacial alloy layer using time-tagged, time-correlated single-photon counting. In photoluminescence (PL) intensity trajectories of some of the dots, we resolve three distinct states of different emissivities (“bright”, “gray”, and “dark”...
We calculate the recombination energies and probabilities of neutral excitons (X), singly charged ex...
Auger recombination is a nonradiative three-particle process wherein the electron–hole recombination...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...
Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is o...
Auger recombination is the main non-radiative decay pathway for multi-carrier states of colloidal qu...
In nanocrystal quantum dots (NQDs), generating multiexcitons offers an enabling tool for enhancing N...
In nanocrystal quantum dots (NQDs), generating multiexcitons offers an enabling tool for enhancing N...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Having already achieved near-unity quantum yields, with promising properties for light-emitting diod...
Previous single-particle spectroscopic studies of colloidal quantum dots have indicated a significan...
Using electrochemical charge injection, the fluorescence lifetimes of negatively charged core/shell ...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Nonradiative Auger recombination is the primary exciton loss mechanism in colloidal nanocrystals and...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
We calculate the recombination energies and probabilities of neutral excitons (X), singly charged ex...
Auger recombination is a nonradiative three-particle process wherein the electron–hole recombination...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...
Application of colloidal semiconductor quantum dots (QDs) in optical and optoelectronic devices is o...
Auger recombination is the main non-radiative decay pathway for multi-carrier states of colloidal qu...
In nanocrystal quantum dots (NQDs), generating multiexcitons offers an enabling tool for enhancing N...
In nanocrystal quantum dots (NQDs), generating multiexcitons offers an enabling tool for enhancing N...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Having already achieved near-unity quantum yields, with promising properties for light-emitting diod...
Previous single-particle spectroscopic studies of colloidal quantum dots have indicated a significan...
Using electrochemical charge injection, the fluorescence lifetimes of negatively charged core/shell ...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Nonradiative Auger recombination is the primary exciton loss mechanism in colloidal nanocrystals and...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
Conventional colloidal quantum dots (QDs) suffer from rapid energy losses by nonradiative (Auger) pr...
We calculate the recombination energies and probabilities of neutral excitons (X), singly charged ex...
Auger recombination is a nonradiative three-particle process wherein the electron–hole recombination...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...