Oleksandr I. Datsenko
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Biography and Research Information
OverviewAI-generated summary
Oleksandr I. Datsenko's research investigates the optical and electronic properties of semiconductor materials, with a particular focus on molybdenum disulfide (MoS₂). His work explores phenomena such as trion binding energy, photoluminescence, and exciton behavior in monolayer and few-layer MoS₂, examining the influence of strain, defects, and material structure on these properties. Datsenko also contributes to research involving optical thermometry using doped aluminum nitride films and has published on the optimization of data processing for radar surveillance systems. His collaborations at the University of Arkansas include work with Fernando Maia de Oliveira, Morgan E. Ware, Yuriy I. Mazur, and Shui-Qing Yu.
Metrics
- h-index: 15
- Publications: 64
- Citations: 898
Selected Publications
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Graphene-interface-assisted growth of oxygen-rich AlN thin films by magnetron sputtering: morphology, crystallography, and defect-related photoluminescence (2026)
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Impedance spectroscopy and AC conductivity mechanism in GeSn thin films (2026)
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Plasmonic surface-enhanced Raman scattering of multilayer HfS2 by Ag nanoprisms, Au nanorods, and nanospheres (2025)
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Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys (2025)
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Deep level transient spectroscopy and theoretical modelling of defect states in few-layer MoS2 (2025)
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Sm3+-doped oxygen-rich AlN film: Probing luminescence thermometry and evidencing energy transfer via Sm-O pairs (2024)
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Influence of Illumination Spectrum on Dissociation Kinetics of Iron–Boron Pairs in Silicon (2024)
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Electron levels of defects in In(Ga)As/(In)GaAs nanostructures: A review (2024)
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Exciton and Trion at the Perimeter and Grain Boundary of CVD-Grown Monolayer MoS<sub>2</sub>: Strain Effects Influencing Application in Nano-Optoelectronics (2024)
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Photoluminescence thermometry using broadband multi-peak detection in Eu2+/Eu3+-codoped oxygen-rich AlN film (2024)
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Tensile strain creates trion: Excitonic photoluminescence distribution over bilayer MoS2 grown by CVD (2023)
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Enhanced photoconductivity of hybrid 2D-QD MoS2–AgInS2 structures (2023)
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Photoconductivity of GeSn thin films with up to 15% Sn content (2023)
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Free exciton and bound excitons on Pb and I vacancies and O and I substituting defects in PbI2: Photoluminescence and DFT calculations (2023)
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High-sensitive optical thermometry via thermally coupled levels of Er in AlN thin film (2023)
Collaboration Network
Top Collaborators
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
- Tip-induced nanoscale engineering of surface potential and conductivity in GeSn alloys
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