Emerging photoluminescence in monolayer MoS2.
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Summary
This observation shows that quantum confinement in layered d-electron materials like MoS(2), a prototypical metal dichalcogenide, provides new opportunities for engineering the electronic structure of matter at the nanoscale.
- Type
- article
- Published
- 2010-03-15
- Cited by
- 8,714
- References
- 4
- OpenAlex
- https://openalex.org/W2092044679
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1353329
Keywords
Photoluminescence, Monolayer, Materials science, Nanomaterials, Band gap
References
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Cited by
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- Large Area Growth and Electrical Properties of p-Type WSe2 Atomic Layers
- A green route to fabricate MoS2 nanosheets in water-ethanol-CO2.
- Metallic 1T phase MoS2 nanosheets as supercapacitor electrode materials.
- Microscopic basis for the band engineering of Mo1−xWxS2-based heterojunction
- Rhenium Dichalcogenides: Layered Semiconductors with Two Vertical Orientations.
- Broadband Black‐Phosphorus Photodetectors with High Responsivity
- 2D Layered Materials of Rare‐Earth Er‐Doped MoS2 with NIR‐to‐NIR Down‐ and Up‐Conversion Photoluminescence
- Near-infrared light triggered superior photocatalytic activity from MoS2-NaYF4:Yb(3+)/Er(3+) nanocomposites.
- Transport Dynamics of Neutral Excitons and Trions in Monolayer WS2.
- Targeted Synthesis of 2H‐ and 1T‐Phase MoS2 Monolayers for Catalytic Hydrogen Evolution
- Phase engineering of MoS2 through GaN/AlN substrate coupling and electron doping.
- Slow cooling and efficient extraction of C-exciton hot carriers in MoS2 monolayer
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