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dc.contributor.authorKovalenko, D.L.-
dc.contributor.authorDobromir, M.-
dc.contributor.authorVaskevich, V.V.-
dc.contributor.authorSemchenko, A.V.-
dc.contributor.authorLuca, D.-
dc.contributor.authorSidski, V.V.-
dc.contributor.authorTyulenkova, O.I.-
dc.contributor.authorКоваленко, Д.Л.-
dc.contributor.authorВаськевич, В.В.-
dc.contributor.authorСемченко, А.В.-
dc.contributor.authorСидский, В.В.-
dc.contributor.authorТюленкова, О.И.-
dc.date.accessioned2021-10-28T12:03:57Z-
dc.date.available2021-10-28T12:03:57Z-
dc.date.issued2021-
dc.identifier.citationSol-gel synthesis of TiO₂ nanotubes based on ZnO nanorods, for use in solar cells / D.L. Kovalenko [et al.] // Inter-Academia 2021 : the 19th International Conference on Global Research and Education (Gomel, Belarus, 20 – 22 October, 2021) / S.A. Khakhomov, I.V. Semchenko, O.M. Demidenko, D.L. Kovalenko, A.A. Sereda, T.V. Lozovskaya ; F. Skorina Gomel State UniversityGomel. - Gomel, 2021 - P. 76-78.ru
dc.identifier.urihttp://elib.gsu.by/jspui/handle/123456789/29237-
dc.description.abstractThis paper describes the sol-gel method for obtaining TiO₂ nanotubes on a sublayer of ZnO nanorods. The ZnO nanorod layer was pre-formed by the hydrothermal method. Optimal regimes have been determined for the formation of TiO₂-ZnO structures. An extended surface nano-morphology study of the obtained materials has been carried out.ru
dc.language.isoАнглийскийru
dc.publisherF. Skorina Gomel State Universityru
dc.titleSol-gel synthesis of TiO₂ nanotubes based on ZnO nanorods, for use in solar cellsru
dc.typeArticleru
dc.rootInter-Academia 2021 : the 19th International Conference on Global Research and Education (Gomel, Belarus, 20 – 22 October, 2021)ru
dc.placeOfPublicationGomelru
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