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dc.creatorKremenović, Aleksandar
dc.creatorGrujić-Brojčin, Mirjana
dc.creatorTomić, Nataša
dc.creatorLazović, Vladimir
dc.creatorBajuk-Bogdanović, Danica
dc.creatorKrstić, Jugoslav
dc.creatorŠćepanović, Maja
dc.date.accessioned2022-12-05T11:18:23Z
dc.date.available2022-12-05T11:18:23Z
dc.date.issued2022
dc.identifier.issn2052-5206
dc.identifier.urihttps://cer.ihtm.bg.ac.rs/handle/123456789/5424
dc.description.abstractA size-strain line-broadening analysis of the XRPD patterns and Raman spectra for two anatase/brookite (TiO2)-based nanocomposites with carbon (C) was carried out and the results compared with those of a similar sample free of carbon. The crystal structures and microstructures of anatase and brookite, as well as their relative abundance ratio, have been refined from XRPD data by the Rietveld method (the low amount of carbon is neglected). The XRPD size-strain analysis resulted in reliable structure and microstructure results for both anatase and brookite. The experimental Raman spectra of all the samples in the region 100-200 cm-1are dominated by a strong feature primarily composed of the most intense modes of anatase (Eg ) and brookite (A 1g ). The anatase crystallite sizes of 14-17 nm, estimated by XRPD, suggest the application of the phonon confinement model (PCM) for the analysis of the anatase Eg mode, whereas the relatively large brookite crystallite size (27-29 nm) does not imply the use of the PCM for the brookite A 1g mode. Superposition of the anatase Eg mode profile, calculated by the PCM, and the Lorentzian shape of the brookite A 1g mode provide an appropriate simulation of the change in the dominant Raman feature in the spectra of TiO2-based nanocomposites with carbon. Raman spectra measured in the high-frequency range (1000-2000 cm-1) provide information on carbon in the investigated nanocomposite materials. The results from field-emission scanning electron microscope (SEM), thermogravimetric analysis (TGA), Fourier transform infrared (FTIR) spectroscopy and nitrogen physisorption measurements support the XRPD and Raman results.sr
dc.language.isoensr
dc.publisherUK : International Union of Crystallographysr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200126/RS//sr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200026/RS//sr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200146/RS//sr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200024/RS//sr
dc.rightsrestrictedAccesssr
dc.sourceActa Crystallographica Section B: Structural Science, Crystal Engineering and Materialssr
dc.subjectanatasesr
dc.subjectbrookitesr
dc.subjectphonon confinement modelsr
dc.subjectRaman spectrasr
dc.subjectsize-strain line broadeningsr
dc.subjectTiO2sr
dc.subjectXRPDsr
dc.titleSize-strain line-broadening analysis of anatase/brookite (TiO2)-based nanocomposites with carbon (C): XRPD and Raman spectroscopic analysissr
dc.typearticlesr
dc.rights.licenseARRsr
dc.citation.volume78
dc.citation.spage214
dc.citation.epage222
dc.citation.rankM22~
dc.identifier.pmid35411859
dc.identifier.doi10.1107/S2052520622001731
dc.identifier.scopus2-s2.0-85128024948
dc.identifier.wos000782303000012
dc.type.versionpublishedVersionsr


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