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Ultrafast optical spectroscopy of semiconducting and plasmonic nanostructures and their hybrids

Articolo
Data di Pubblicazione:
2020
Abstract:
The knowledge of the carrier dynamics in nanostructures is of fundamental importance for the development of (opto)electronic devices. This is true for semiconducting nanostructures as well as for plasmonic nanoparticles (NPs). Indeed, improvement of photocatalytic efficiencies by combining semiconductor and plasmonic nanostructures is one of the reasons why their ultrafast dynamics are intensively studied. In this work, we will review our activity on ultrafast spectroscopy in nanostructures carried out in the recently established EuroFEL Support Laboratory. We have investigated the dynamical plasmonic responses of metal NPs both in solution and in 2D and 3D arrays on surfaces, with particular attention being paid to the effects of the NP shape and to the conversion of absorbed light into heat on a nano-localized scale. We will summarize the results obtained on the carrier dynamics in nanostructured perovskites with emphasis on the hot-carrier dynamics and in semiconductor nanosystems such as ZnSe and Si nanowires, with particular attention to the band-gap bleaching dynamics. Subsequently, the study of semiconductor-metal NP hybrids, such as CeO2-Ag NPs, ZnSe-Ag NPs and ZnSe-Au NPs, allows the discussion of interaction mechanisms such as charge carrier transfer and Forster interaction. Finally, we assess an alternative method for the sensitization of wide band gap semiconductors to visible light by discussing the relationship between the carrier dynamics of TiO(2)NPs and V-doped TiO(2)NPs and their catalytic properties.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
transient absorbance spectroscopy; plasmonic nanostructures; semiconductor nanostructures; carrier dynamics; ultrafast optical spectroscopy; photocatalysis
Elenco autori:
Turchini, Stefano; Paladini, Alessandra; Catone, Daniele; O'Keeffe, PATRICK KEVIN; Toschi, Francesco; Martelli, Faustino
Autori di Ateneo:
CATONE DANIELE
O'KEEFFE PATRICK KEVIN
PALADINI ALESSANDRA
TOSCHI FRANCESCO
TURCHINI STEFANO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/377567
Pubblicato in:
NANOTECHNOLOGY (BRISTOL. PRINT)
Journal
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