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dc.contributor.authorAkylbekova, Aiman
dc.contributor.authorMantiyeva, Kyzdarkhan
dc.contributor.authorDauletbekova, Alma
dc.contributor.authorAkilbekov, Abdirash
dc.contributor.authorBaimukhanov, Zein
dc.contributor.authorVlasukova, Liudmila
dc.contributor.authorAralbayeva, Gulnara
dc.contributor.authorAbdrakhmetova, Ainash
dc.contributor.authorBazarbek, Assyl-Dastan
dc.contributor.authorAbdihalikova, Fariza
dc.date.accessioned2026-03-04T11:17:57Z
dc.date.available2026-03-04T11:17:57Z
dc.date.issued2024
dc.identifier.citationAkylbekova, A.; Mantiyeva, K.; Dauletbekova, A.; Akilbekov, A.; Baimukhanov, Z.; Vlasukova, L.; Aralbayeva, G.; Abdrakhmetova, A.; Bazarbek, A.-D.; Abdihalikova, F. The Synthesis and Characterization of CdS Nanostructures Using a SiO2/Si Ion-Track Template. Crystals 2024, 14, 1091. https://doi.org/10.3390/ cryst14121091ru
dc.identifier.issn2073-4352
dc.identifier.otherdoi.org/10.3390/ cryst14121091
dc.identifier.urihttp://repository.enu.kz/handle/enu/29753
dc.description.abstractIn the present work, we present the process of preparing CdS nanostructures based on templating synthesis using chemical deposition (CD) on a SiO2/Si substrate. A 0.7 µm thick silicon dioxide film was thermally prepared on the surface of an n-type conduction Si wafer, followed by the creation of latent ion tracks on the film by irradiating them with swift heavy Xe ions with an energy of 231 MeV and a fluence of 108 cm−2 . As a result of etching in hydrofluoric acid solution (4%), pores in the form of truncated cones with different diameters were formed. The filling of the nanopores with cadmium sulfide was carried out via templated synthesis using CD methods on a SiO2 nanopores/Si substrate for 20–40 min. After CdS synthesis, the surfaces of nanoporous SiO2 nanopores/Si were examined using a scanning electron microscope to determine the pore sizes and the degree of pore filling. The crystal structure of the filled silica nanopores was investigated using X-ray diffraction, which showed CdS nanocrystals with an orthorhombic structure with symmetry group 59 Pmmn observed at 2θ angles of 61. 48◦ and 69.25◦ . Photoluminescence spectra were recorded at room temperature in the spectral range of 300–800 nm at an excitation wavelength of 240 nm, where emission bands centered around 2.53 eV, 2.45 eV, and 2.37 eV were detected. The study of the CVCs showed that, with increasing forward bias voltage, there was a significant increase in the forward current in the samples with a high degree of occupancy of CdS nanoparticles, which showed the oneway electronic conductivity of CdS/SiO2/Si nanostructures. For the first time, CdS nanostructures with orthorhombic crystal structure were obtained using track templating synthesis, and the density of electronic states was modeled using quantum–chemical calculations. Comparative analysis of experimental and calculated data of nanostructure parameters showed good agreement and are confirmed by the results of other authors.ru
dc.language.isoenru
dc.publisherCrystalsru
dc.relation.ispartofseries14, 1091;
dc.subjectCdS nanostructuresru
dc.subjectchemical depositionru
dc.subjectSiO2/Si substrateru
dc.subjectSHIru
dc.subjectnanoporous SiO2ru
dc.subjectCdS/SiO2/Si structuresru
dc.subjectX-ray diffractionru
dc.subjectRaman spectroscopyru
dc.subjectphotoluminescenceru
dc.subjectexciton scatteringru
dc.titleThe Synthesis and Characterization of CdS Nanostructures Using a SiO2/Si Ion-Track Templateru
dc.typeArticleru


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