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Effects of crystal morphology on the hot-carrier dynamics in mixed-cation hybrid lead halide perovskites
- Source :
- Energies; Volume 14; Issue 3; Pages: 708, Energies (Basel) 14 (2021). doi:10.3390/en14030708, info:cnr-pdr/source/autori:Catone, Daniele; Ammirati, Giuseppe; O'Keeffe, Patrick; Martelli, Faustino; Di Mario, Lorenzo; Turchini, Stefano; Paladini, Alessandra; Toschi, Francesco; Agresti, Antonio; Pescetelli, Sara; Di Carlo, Aldo/titolo:Effects of Crystal Morphology on the Hot-Carrier Dynamics in Mixed-Cation Hybrid Lead Halide Perovskites/doi:10.3390%2Fen14030708/rivista:Energies (Basel)/anno:2021/pagina_da:/pagina_a:/intervallo_pagine:/volume:14, Energies, Vol 14, Iss 708, p 708 (2021), Energies, 14(3):708. MDPI AG
- Publication Year :
- 2021
- Publisher :
- MDPI AG, 2021.
-
Abstract
- Ultrafast pump-probe spectroscopies have proved to be an important tool for the investigation of charge carriers dynamics in perovskite materials providing crucial information on the dynamics of the excited carriers, and fundamental in the development of new devices with tailored photovoltaic properties. Fast transient absorbance spectroscopy on mixed-cation hybrid lead halide perovskite samples was used to investigate how the dimensions and the morphology of the perovskite crystals embedded in the capping (large crystals) and mesoporous (small crystals) layers affect the hot-carrier dynamics in the first hundreds of femtoseconds as a function of the excitation energy. The comparative study between samples with perovskite deposited on substrates with and without the mesoporous layer has shown how the small crystals preserve the temperature of the carriers for a longer period after the excitation than the large crystals. This study showed how the high sensitivity of the time-resolved spectroscopies in discriminating the transient response due to the different morphology of the crystals embedded in the layers of the same sample can be applied in the general characterization of materials to be used in solar cell devices and large area modules, providing further and valuable information for the optimization and enhancement of stability and efficiency in the power conversion of new perovskite-based devices.
- Subjects :
- Control and Optimization
Materials science
Absorption spectroscopy
Energy Engineering and Power Technology
Halide
02 engineering and technology
010402 general chemistry
Perovskite
lcsh:Technology
01 natural sciences
law.invention
Condensed Matter::Materials Science
law
Solar cell
Electrical and Electronic Engineering
Engineering (miscellaneous)
perovskite
ultrafast
hot-carriers
solar cell
Perovskite (structure)
lcsh:T
Renewable Energy, Sustainability and the Environment
business.industry
021001 nanoscience & nanotechnology
0104 chemical sciences
Characterization (materials science)
Ultrafast
Excited state
Hot-carriers
Optoelectronics
Charge carrier
0210 nano-technology
Mesoporous material
business
Energy (miscellaneous)
Subjects
Details
- Language :
- English
- ISSN :
- 19961073
- Volume :
- 14
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Energies
- Accession number :
- edsair.doi.dedup.....be286de0888783c870a152e9a7ee83cd