Radiative recombination of excitons in the transition-metal dichalcogenides MoS2:Cl2 and WS2:Br2
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CHARRON, Luc, DUMCHENKO, Dumitru, FORTIN, Emery, GHERMAN, Corneliu, KULYUK, Leonid. Radiative recombination of excitons in the transition-metal dichalcogenides MoS2:Cl2 and WS2:Br2. In: Journal of Luminescence, 2005, vol. 112, pp. 45-49. ISSN 0022-2313. DOI: https://doi.org/10.1016/j.jlumin.2004.09.077
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Journal of Luminescence
Volumul 112 / 2005 / ISSN 0022-2313

Radiative recombination of excitons in the transition-metal dichalcogenides MoS2:Cl2 and WS2:Br2

DOI:https://doi.org/10.1016/j.jlumin.2004.09.077

Pag. 45-49

Charron Luc1, Dumchenko Dumitru2, Fortin Emery1, Gherman Corneliu2, Kulyuk Leonid2
 
1 University of Ottawa,
2 Institute of Applied Physics, Academy of Sciences of Moldova
 
 
Disponibil în IBN: 5 octombrie 2023


Rezumat

The comparative study of the excitonic radiative recombination in 2H-MoS2:Cl2 and 2H-WS2:Br2 layered crystals is presented. The steady-state emission spectra of both the investigated materials include two distinct regions. The short-wavelength region consisting of sharp lines is produced by bound excitons, related to the halogen molecules intercalated in the layered semiconductors during the growth process. The second spectral region - a vibronic broad band identical for both types of crystals, is attributed to the deep radiative centres, caused by the intrinsic defects of the host lattices. The atypical temperature increase of the excitonic radiative decay time observed for 2H-WS2:Br2 in the range T=2-7K is related to the presence of a long lifetime sublevel, placed 0.3 meV above the lowest excitonic state. 

Cuvinte-cheie
Bound excitons, intercalation, photoluminescence