Please use this identifier to cite or link to this item: https://er.knutd.edu.ua/handle/123456789/16997
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dc.contributor.authorЛіснича, Т. В.uk
dc.contributor.authorГлоба, Н. І.uk
dc.contributor.authorШматок, Ю. В.uk
dc.contributor.authorЧикида, Т. Ю.uk
dc.contributor.authorКириллов, С. О.uk
dc.date.accessioned2021-01-21T22:45:17Z-
dc.date.available2021-01-21T22:45:17Z-
dc.date.issued2020
dc.identifier.citationЕфективність циклування нанорозмірного TiO2 в літієвих та натрієвих джерелах струму [Текст] / Т. В. Ліснича, Н. І. Глоба, Ю. В. Шматок, Т. Ю. Чикида, С. О. Кириллов // Promising materials and processes in applied electrochemistry – 2020 : monograph / ed.: V. Z. Barsukov, Yu. V. Borysenko, V. G. Khomenko, O. V. Linyucheva ; editor-in-chief V. Z. Barsukov. - Kyiv : KNUTD, 2020. - С. 38-53.uk
dc.identifier.urihttps://er.knutd.edu.ua/handle/123456789/16997-
dc.description.abstractThe paper presents the results of studies of nanosized titanium dioxide (TiO2) samples synthesized by alkaline hydrolysis. The surface properties of the samples were modified using high-temperature annealing. As a result, samples with a specific surface area of 80-174 m2/g were obtained. The values of specific capacity in lithium and sodium cells were determined by galvanostatic cycling method. It is noted that the nature of the curves obtained, the values оf specific capacity and its stability during cycling depend on the nature of the alkali metal cation and the surface properties of TiO2.en
dc.languageuk
dc.subjecttitanium dioxideen
dc.subjectsurface propertiesen
dc.subjectlithium cellen
dc.subjectsodium cellen
dc.titleЕфективність циклування нанорозмірного TiO2 в літієвих та натрієвих джерелах струмуuk
dc.title.alternativeCycling efficiency of nanosized TiO2 in lithium and sodium batteries
dc.typeArticle
local.contributor.altauthorLisnycha, T. V.en
local.contributor.altauthorGloba, N. I.en
local.contributor.altauthorShmatok, Yu. V.en
local.contributor.altauthorChykyda, T. Yu.en
local.contributor.altauthorKirillov, S. A.en
local.sourcePromising materials and processes in applied electrochemistry – 2020uk
local.subject.method0
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