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Novel near-infrared emission from crystal defects in MoS 2 multilayer flakes

Academic Article
Publication Date:
2016
abstract:
The structural defects in two-dimensional transition metal dichalcogenides, including point defects, dislocations and grain boundaries, are scarcely considered regarding their potential to manipulate the electrical and optical properties of this class of materials, notwithstanding the significant advances already made. Indeed, impurities and vacancies may influence the exciton population, create disorder-induced localization, as well as modify the electrical behaviour of the material. Here we report on the experimental evidence, confirmed by ab initio calculations, that sulfur vacancies give rise to a novel near-infrared emission peak around 0.75 eV in exfoliated MoS2 flakes. In addition, we demonstrate an excess of sulfur vacancies at the flake's edges by means of cathodoluminescence mapping, aberration-corrected transmission electron microscopy imaging and electron energy loss analyses. Moreover, we show that ripplocations, extended line defects peculiar to this material, broaden and redshift the MoS2 indirect bandgap emission.
Iris type:
01.01 Articolo in rivista
Keywords:
two-dimensional tr2D transition metal dichalcogenidesides; optical emission; structural defects; sulfur vacancies; ab initio simulations
List of contributors:
Fabbri, Filippo; Rotunno, Enzo; Bonnini, Elisa; Cinquanta, EUGENIO LUIGI; Lazzarini, Laura; Ferrari, Claudio; Molle, Alessandro; Nicotra, Giuseppe; Salviati, Giancarlo; Longo, Massimo
Authors of the University:
CINQUANTA EUGENIO LUIGI
FABBRI FILIPPO
LONGO MASSIMO
MOLLE ALESSANDRO
NICOTRA GIUSEPPE
ROTUNNO ENZO
Handle:
https://iris.cnr.it/handle/20.500.14243/321739
Published in:
NATURE COMMUNICATIONS
Journal
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URL

http://www.nature.com/articles/ncomms13044
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