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Atomically Thin <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"> <mml:msub> <mml:mi>MoS</mml:mi> <mml:mn>2</mml:mn> </mml:msub> </mml:math> : A New Direct-Gap Semiconductor

Physical Review Letters · 2010 · Vol. 105(13) · pp. 136805–136805
Kin Fai MakChanggu LeeJames HoneJie ShanTony F. Heinz

Abstract

The electronic properties of ultrathin crystals of molybdenum disulfide consisting of N=1,2,…,6 S-Mo-S monolayers have been investigated by optical spectroscopy. Through characterization by absorption, photoluminescence, and photoconductivity spectroscopy, we trace the effect of quantum confinement on the material's electronic structure. With decreasing thickness, the indirect band gap, which lies below the direct gap in the bulk material, shifts upwards in energy by more than 0.6 eV. This leads to a crossover to a direct-gap material in the limit of the single monolayer. Unlike the bulk material, the MoS₂ monolayer emits light strongly. The freestanding monolayer exhibits an increase in luminescence quantum efficiency by more than a factor of 10⁴ compared with the bulk material.

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References
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Emerging Photoluminescence in Monolayer MoS<sub>2</sub>
Nano Letters · 2010 · 9,198 citations
Two-dimensional atomic crystals
Proceedings of the National Academy of Sciences · 2005 · 11,443 citations
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