Litcius/Paper detail

Temperature- and Size-Dependent Photoluminescence of CuInS2 Quantum Dots

Oleg A. Korepanov, Dmitry A. Kozodaev, О. А. Aleksandrova, Alexander N. Bugrov, D. D. Firsov, Demid A. Kirilenko, Д. С. Мазинг, В. А. Мошников, Z. V. Shomakhov

2023Nanomaterials15 citationsDOIOpen Access PDF

Abstract

quantum dots (QDs). In order to elucidate the influence of QD size on PL temperature dependence, size-selective precipitation was used to obtain several nanoparticle fractions. Additionally, the nanoparticles' morphology and chemical composition were studied using transmission electron microscopy, X-ray diffraction, and X-ray photoelectron spectroscopy. The obtained QDs showed luminescence in the visible-near infrared range. The PL energy, linewidth, and intensity were studied within an 11-300 K interval. For all fractions, a temperature decrease led to a shift in the emission maximum to higher energies and pronounced growth of the PL intensity down to 75-100 K. It was found that for large particle fractions, the PL intensity started to decrease, with temperature decreasing below 75 K, while the PL intensity of small nanoparticles remained stable.

Topics & Concepts

PhotoluminescenceQuantum dotX-ray photoelectron spectroscopyLaser linewidthLuminescenceMaterials scienceNanoparticleAnalytical Chemistry (journal)Particle sizeSpectroscopyTransmission electron microscopyAtmospheric temperature rangePrecipitationNanotechnologyChemistryOptoelectronicsNuclear magnetic resonanceOpticsPhysical chemistryPhysicsLaserQuantum mechanicsMeteorologyChromatographyQuantum Dots Synthesis And PropertiesChalcogenide Semiconductor Thin FilmsZnO doping and properties