Articolul precedent |
Articolul urmator |
529 6 |
Ultima descărcare din IBN: 2021-09-13 12:16 |
SM ISO690:2012 SIMINEL, Nikita, NEDELEA, Vitalie, SUSHKEVICH, Konstantin, SIMINEL, Anatolii, MICU, A., KULYUK, Leonid. Radiative recombination of bound excitons in MoSe2:I2 layered crystals. In: IFMBE Proceedings: . 4th International Conference on Nanotechnologies and Biomedical Engineering, Ed. 4, 18-21 septembrie 2019, Chişinău. Switzerland: Springer Nature Switzerland AG, 2020, Ediția 4, Vol.77, pp. 279-283. ISBN 978-303031865-9. ISSN 16800737. DOI: https://doi.org/10.1007/978-3-030-31866-6_55 |
EXPORT metadate: Google Scholar Crossref CERIF DataCite Dublin Core |
IFMBE Proceedings Ediția 4, Vol.77, 2020 |
|||||||
Conferința "Conference on Nanotechnologies and Biomedical Engineering" 4, Chişinău, Moldova, 18-21 septembrie 2019 | |||||||
|
|||||||
DOI:https://doi.org/10.1007/978-3-030-31866-6_55 | |||||||
Pag. 279-283 | |||||||
|
|||||||
Descarcă PDF | |||||||
Rezumat | |||||||
The steady-state and time-resolved photoluminescence (PL) of excitons bound on intercalated iodine molecules was studied for the first time in MoSe2:I2 layered single crystals. Along with narrow exciton spectral lines located near the energy of the MoSe2 indirect bandgap in the region of 0.98–1.06 eV, an IR broadband radiation centered at 0.78 eV and caused by the recombination of photoexcited carriers through the intrinsic lattice defects were found. To describe the temperature dependences of the intensity of steady-state PL, as well as its temporal characteristics, a kinetic model was proposed that takes into account the radiative and non-radiative recombination channels present in this quasi-two-dimensional semiconductor. |
|||||||
Cuvinte-cheie Bound excitons, intercalation, Layered crystals, Luminescence, Molybdenum diselenide, transition metal dichalcogenides |
|||||||
|