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Organic light-emitting diode with an emitter based on a planar layer of CdSe semiconductor nanoplatelets
Authors:A. A. Vashchenko  A. G. Vitukhnovskii  V. S. Lebedev  A. S. Selyukov  R. B. Vasiliev  M. S. Sokolikova
Affiliation:1. Lebedev Physical Institute, Russian Academy of Sciences, Moscow, 119991, Russia
2. Moscow Institute of Physics and Technology (State University), Dolgoprudnyi, Moscow region, 141700, Russia
3. Moscow State University, Moscow, 119992, Russia
Abstract:Colloidal CdSe semiconductor nanoplatelets with characteristic longitudinal sizes of 20–70 nm and thicknesses of several atomic layers are synthesized. The spectra and kinetics of the photoluminescence of these quasi-two-dimensional nanostructures (quantum wells) at room and cryogenic temperatures are investigated. A hybrid light-emitting diode with the electron and hole transport layers based on TAZ and TPD organic compounds, respectively, and the active “emissive” element based on a layer of such single-component nanoplatelets is designed. The spectral and electrical characteristics of the fabricated device, emitting at a wavelength of λ = 515 nm, are determined. The use of quasi-two-dimensional nanostructures of this kind (nanoplatelets) is promising for the fabrication of hybrid light-emitting diodes with pure colors.
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