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Synthesis, Characterization and Modelling of Colloidal Quantum Dots

dc.contributor.authorKarim, Md. Rezaul
dc.contributor.authorBalaban, Mesut
dc.contributor.authorAydin, Hakan
dc.contributor.authorUnlu, Hilmi
dc.contributor.authorYukselici, M. Hikmet
dc.date.accessioned2026-06-27T14:42:31Z
dc.date.issued2022
dc.description.abstractColloidal semiconductor nanocrystals with their diameters range between 2-10nmhave received great theoretical and experimental interest for both optical and electronical applications such as solar cells, light emitting diodes (LEDs), lasers and fluorescence imaging over the last few decades due to their size dependent optical, physical and chemical properties. In this chapter, we present a reviewabout the experimental and theoretical study about strain effects on core band gap and diameter of spherical bare CdSe core and CdSe/ZnS core/shell quantum dots (QDs) synthesized by using colloidal technique at varying temperatures. We will discuss the results of the structural, optical and dielectric characterizations. High resolution transmission electron microscopy (HRTEM) and x-ray diffraction (XRD) characterizations indicate that CdSe and CdSe/ZnS QDs have average particle sizes about 3.50 nm and 4.84 nm, respectively. Ultraviolet visible (UV-Vis) absorption and fluorescence emission spectroscopy measurements of first optical peak energies show that the compressive strain causes an increase (decrease) in the core band gap (diameter) of spherical CdSe/ZnS core/shell QDs at any temperature. Elastic strain modified effective mass approximation (EMA) predicts that there is a parabolic decrease (increase) in the core bandgap (diameter) of QDs with temperature. The diameter of spherical bare CdSe core and CdSe/ZnS core/shell QDs calculated by using strain modified EMA, with core bandgap extracted from absorption spectra are in excellent agreement with HRTEM data.en
dc.description.sponsorshipResearch Foundation of.Istanbul Technical University (ITU BAP Project) [34537]
dc.description.urihttps://doi.org/10.1007/978-3-030-93460-6_3
dc.identifier.doi10.1007/978-3-030-93460-6_3
dc.identifier.eissn1437-0859
dc.identifier.endpage153
dc.identifier.isbn978-3-030-93460-6; 978-3-030-93459-0
dc.identifier.issn0303-4216
dc.identifier.startpage117
dc.identifier.urihttps://hdl.handle.net/20.500.14981/63778
dc.identifier.volume144
dc.identifier.wos000894521600004
dc.language.isoeng
dc.publisherSPRINGER INTERNATIONAL PUBLISHING AG
dc.relation.ispartofPROGRESS IN NANOSCALE AND LOW-DIMENSIONAL MATERIALS AND DEVICES: Properties, Synthesis, Characterization, Modelling and Applications
dc.subjectII-VI
dc.subjectNANOCRYSTALS
dc.subjectDEPENDENCE
dc.subjectGROWTH
dc.subjectScience & Technology - Other Topics
dc.subjectMaterials Science
dc.subjectPhysics
dc.titleSynthesis, Characterization and Modelling of Colloidal Quantum Dots
dc.typeArticle; Book Chapter
dspace.entity.typePublication
local.import.sourceWOS

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