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1.
Green mechanochemical synthesis of binary and ternary cadmium chalcogenides with tunable band gaps
Matjaž Kristl, Neža Zanjkovič, Jona Kunej, Sašo Gyergyek, Janja Stergar, 2025, original scientific article

Abstract: In this work, we report on the mechanochemical preparation and characterization of binary (CdS, CdSe, and CdTe) and ternary (CdS0.5Se0.5, CdS0.5Te0.5, and CdSe0.5Te0.5) cadmium chalcogenides. The compounds were synthesized in a planetary micro mill using a zirconia grinding bowl and zirconia grinding balls. The products were examined by powder X-ray diffraction (pXRD), transmission electron microscopy (TEM), energydispersive X-ray spectroscopy (EDX), dynamic light scattering (DLS), UV–Vis spectroscopy, and differential scanning calorimetry (DSC). Interestingly, CdO formed as a by-product only during milling of Cd+S and Cd+Se in air, while it was absent in the Cd+Te and all ternary systems. The materials were obtained in the form of irregularly shaped aggregates measuring up to several hundred nanometers, composed of nearly spherical primary nanoparticles with diameters in the 10–20 nm range. The band gap energies calculated using Tauc plots for CdS0.5Se0.5, CdS0.5Te0.5, and CdSe0.5Te0.5 were 2.01 eV, 1.72 eV, and 1.53 eV, respectively. These results demonstrate the expected tunability of band gaps in ternary cadmium chalcogenides and attest to the potential of such materials for semiconducting applications, particularly in solar cells. The mechanochemical approach is once again shown to be a simple and effective method for the preparation of both binary and ternary chalcogenides, avoiding the use of solvents, toxic precursors, and energy-consuming reaction conditions.
Keywords: cadmium, sulfide, selenide, telluride, ternary compounds, mechanochemistry, band gap
Published in DKUM: 01.12.2025; Views: 0; Downloads: 1
.pdf Full text (3,99 MB)

2.
Sinteza ternarnih kadmijevih halkogenidov s planetarnim mikromlinom : diplomsko delo univerzitetnega študijskega programa I. stopnje
Jona Kunej, 2024, undergraduate thesis

Abstract: Ternarni kadmijevi halkogenidi, kot so CdSexTe1-x, CdSxSe1-x in CdTexS1-x, so osnova sodobnih elektronskih naprav. Uporabljajo se kot laserji, fotodetektorji, v sončnih celicah, v piezoelektroniki, v svetlečih diodah, itd. Kvartarni halkogenid CdSxTexSe1-2x ima številne zanimive aplikacije zaradi svojih edinstvenih optoelektronskih lastnosti. Tako kot ternarni kadmijevi halkogenidi, se tudi CdSxTexSe1-2x uporablja v fotovoltaiki, zaradi svojih sposobnosti absorbiranja širokega spektra sončne svetlobe in učinkovite pretvorbe te energije v električno energijo, v svetlečih diodah in drugih optoelektronskih napravah, zaradi visoke fotoluminiscence, v različnih vrstah senzorjev in v termoelektričnih napravah. Pri diplomskem delu smo uporabljali mehanokemijsko sintezo, ki se v zadnjem času uporablja vse več. Z mehanokemijsko metodo, z uporabo planetarnega mikromlina, smo sintetizirali ternarne kadmijeve halkogenide (CdSexTe1-x, CdSxSe1-x, CdTexS1-x) in kvartarni kadmijev halkogenid CdSxTexSe1-2x. Spreminjali smo pogoje uporabljene v predhodnih raziskavah ter ugotavljala kako le-ti vplivajo na sintezo nanodelcev. Karakteristike sintetiziranih nanodelcev smo po koncu sinteze preverili z rentgensko praškovno difrakcijo, z dinamičnim sipanjem svetlobe, z diferenčno dinamično kalorimetrijo in s transmisijsko elektronsko mikroskopijo.
Keywords: nanomateriali, ternarni kadmijevi halkogenidi, mehanokemisjka sinteza, planetarni mikromlin, karakterizacijske metode
Published in DKUM: 12.09.2024; Views: 27; Downloads: 87
.pdf Full text (5,90 MB)

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