Electrical Control of near-Field Energy Transfer between Quantum Dots and Two-Dimensional Semiconductors.
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Summary
Electrostatically gated semiconducting monolayer molybdenum disulfide (MoS2) is placed atop a homogeneous self-assembled layer of core-shell CdSSe QDs, and efficient nonradiative Förster resonant energy transfer (FRET) from QDs into MoS2 is demonstrated.
- Type
- article
- Published
- 2015-06-03
- Cited by
- 112
- References
- 59
- Access
- Open access
- OpenAlex
- https://openalex.org/W787563647
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17399859
Keywords
Quantum dot, Photoluminescence, Molybdenum disulfide, Optoelectronics, Materials science
References
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- Probing excitonic states in suspended two-dimensional semiconductors by photocurrent spectroscopy
- Photoluminescence Switching of Charged Quantum Dot Films
- Photoinduced Charge Transfer between CdSe Quantum Dots and p-Phenylenediamine
- Two-dimensional material nanophotonics
- Normal Modes in Hexagonal Boron Nitride
- Exciton binding energy and nonhydrogenic Rydberg series in monolayer WS(2).
- Atomically thin MoS₂: a new direct-gap semiconductor.
- Probing excitonic dark states in single-layer tungsten disulphide
- Long range resonance energy transfer from a dye molecule to graphene has (distance)(-4) dependence.
- Linear polarization dependence of microwave-induced magnetoresistance oscillations in high-mobility two-dimensional systems
Cited by
- High-contrast switching and high-efficiency extracting for spontaneous emission based on tunable gap surface plasmon
- Recent advances in energy transfer in bulk and nanoscale luminescent materials: from spectroscopy to applications.
- Exciton polaritons in transition-metal dichalcogenides and their direct excitation via energy transfer
- Evidence for Fast Interlayer Energy Transfer in MoSe2/WS2 Heterostructures.
- Hot Electron-Based Near-Infrared Photodetection Using Bilayer MoS2.
- Energy Transfer from Quantum Dots to Graphene and MoS2: The Role of Absorption and Screening in Two-Dimensional Materials.
- Highly Efficient Nonradiative Energy Transfer from Colloidal Semiconductor Quantum Dots to Wells for Sensitive Noncontact Temperature Probing
- Exciton and Trion Energy Transfer from Giant Semiconductor Nanocrystals to MoS2 Monolayers
- Temperature-dependent resonance energy transfer from CdSe–ZnS core–shell quantum dots to monolayer MoS2
- Emerging opportunities in the two-dimensional chalcogenide systems and architecture
- Electronic Processes within Quantum Dot-Molecule Complexes.
- Graphene as a Reversible and Spectrally Selective Fluorescence Quencher
- Upconversion nanoparticles grafted molybdenum disulfide nanosheets platform for microcystin-LR sensing.
- Near‐Field Energy Transfer Using Nanoemitters For Optoelectronics
- Ultrafast Charge Transfer and Hybrid Exciton Formation in 2D/0D Heterostructures.
- Energy Transfer Sensitization of Luminescent Gold Nanoclusters: More than Just the Classical Förster Mechanism
- Fluorescent Block Copolymer‐MoS2 Nanocomposites for Real‐Time Photothermal Heating and Imaging
- Physics of nonradiative energy transfer in the complex media of 0D, 2D and 3D materials
- Order of magnitude enhancement of monolayer MoS2 photoluminescence due to near-field energy influx from nanocrystal films
- Functionalized Molybdenum Disulfide Nanosheets for 0D-2D Hybrid Nanostructures: Photoinduced Charge Transfer and Enhanced Photoresponse.
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