Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (QDs) have recently attracted significant scientific interest as a possible means to improve device efficiencies [1-5]. Convenient bandgap tunability, easy colloidal synthesis, and solution-based processability of these QDs make them further attractive for such device applications using MEG and MER. For example, recent theoretical and experimental studies have shown that MEG enables >100% peak external quantum efficiency where the generated multi excitons (MEs) are collected in a simple QD solar cell structure [1]. Furthermore, MEG has also been shown in QD photodetectors exhibiting substantially increased photocurrent levels [2]. Another prom...
We explored biexciton generation via carrier multiplication (or multiple-exciton generation) by high...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Using the pseudopotential configuration-interaction method, we calculate the intrinsic lifetime and ...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...
Cataloged from PDF version of article.T In nanocrystal quantum dots (NQDs), generating multiexcitons...
Ankara : The Department of Electrical and Electronics Engineering and the Graduate School of Enginee...
In nanocrystal quantum dots (NQDs), generating multiexcitons offers an enabling tool for enhancing N...
Strong confinement in semiconductor quantum dots enables them to host multiple electron–hole pairs o...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2015.This electronic...
Charged exciton states commonly occur both in spectroscopic studies of quantum dots (QDs) and during...
Colloidal quantum dots (QDs) have been widely studied for nanophotonics and bioimaging applications...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
We report ultra-efficient multiple exciton generation (MEG) for single photon absorption in colloida...
The ability to generate and utilize multiexcited electronic states in colloidal quantum dots (QDs) i...
We explored biexciton generation via carrier multiplication (or multiple-exciton generation) by high...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Using the pseudopotential configuration-interaction method, we calculate the intrinsic lifetime and ...
Multi exciton generation (MEG) and multi exciton recombination (MER) in semiconductor quantum dots (...
Cataloged from PDF version of article.T In nanocrystal quantum dots (NQDs), generating multiexcitons...
Ankara : The Department of Electrical and Electronics Engineering and the Graduate School of Enginee...
In nanocrystal quantum dots (NQDs), generating multiexcitons offers an enabling tool for enhancing N...
Strong confinement in semiconductor quantum dots enables them to host multiple electron–hole pairs o...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2015.This electronic...
Charged exciton states commonly occur both in spectroscopic studies of quantum dots (QDs) and during...
Colloidal quantum dots (QDs) have been widely studied for nanophotonics and bioimaging applications...
Multiexcitons in emerging semiconducting nanomaterials play a critical role in potential optoelectro...
We report ultra-efficient multiple exciton generation (MEG) for single photon absorption in colloida...
The ability to generate and utilize multiexcited electronic states in colloidal quantum dots (QDs) i...
We explored biexciton generation via carrier multiplication (or multiple-exciton generation) by high...
Colloidal II-VI quantum dots (QD) possess tunable optoelectronic properties that make them well-suit...
Using the pseudopotential configuration-interaction method, we calculate the intrinsic lifetime and ...