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Deciphering hot- and multi-exciton dynamics in core-shell QDs by 2D electronic spectroscopies

Academic Article
Publication Date:
2018
abstract:
Although the harnessing of multiple and hot excitons is a prerequisite for many of the groundbreaking applications of semiconductor quantum dots (QDs), the characterization of their dynamics through conventional spectroscopic techniques is cumbersome. Here, we show how a careful analysis of 2DES maps acquired in different configurations (BOXCARS and pump-probe geometry) allows the tracking and visualization of intraband Auger relaxation mechanisms, driving the hot carrier cooling, and interband bi- and tri-exciton recombination dynamics. The results obtained on archetypal core-shell CdSe/ZnS QDs suggest that, given the global analysis of the resulting datasets, 2D electronic spectroscopy techniques can successfully and efficiently dispel the intertwined dynamics of fast and ultrafast recombination processes in nanomaterials. Hence, we propose this analysis scheme to be used in future research on novel quantum confined systems.
Iris type:
01.01 Articolo in rivista
Keywords:
Quantum dots; Exciton dynamics; 2D electron spectroscopy
List of contributors:
Fanizza, Elisabetta; Striccoli, Marinella; Panniello, Annamaria
Authors of the University:
PANNIELLO ANNAMARIA
STRICCOLI MARINELLA
Handle:
https://iris.cnr.it/handle/20.500.14243/392864
Published in:
PCCP. PHYSICAL CHEMISTRY CHEMICAL PHYSICS (PRINT)
Journal
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URL

https://pubs.rsc.org/en/content/articlelanding/2018/cp/c8cp02574f#!divAbstract
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