Please use this identifier to cite or link to this item: https://er.knutd.edu.ua/handle/123456789/18601
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dc.contributor.authorВасильєв, Г. С.uk
dc.contributor.authorВоробйова, В. І.uk
dc.contributor.authorКузьменко, О. М.uk
dc.contributor.authorСкиба, М. І.uk
dc.date.accessioned2021-10-08T22:32:04Z-
dc.date.available2021-10-08T22:32:04Z-
dc.date.issued2019
dc.identifier.citationЕлектрохімічна оцінка відновлювальної здатності рослинних екстрактів [Текст] / Г. С. Васильєв, В. І. Воробйова, О. М. Кузьменко, М. І. Скиба // Promising materials and processes in applied electrochemistry – 2019 : monograph / ed.: V. Z. Barsukov, Yu. V. Borysenko, V. G. Khomenko, O. V. Linyucheva ; editor-in-chief V. Z. Barsukov. - Kyiv : KNUTD, 2019. - С. 246-267.uk
dc.identifier.urihttps://er.knutd.edu.ua/handle/123456789/18601-
dc.description.abstractAgricultural by-products are widely used as a source of cheap and environmentally friendly reagents in “green” chemistry. The chemical composition and reducing ability of water extracts of black currant, grape and apricot wastes were studied. Application of LC-MS revealed that all the extracts contained large amount of natural reducing agents – polyphenols and flavonoids. The electrochemical technique of cycling voltamperometry was used to investigate the reducing ability of the extract. Recorded voltamperograms shoved anodic current rise at the potentials above +0.4 V/SSCE meaning the extracts can be used as reducing agents in green synthesis of silver nanoparticles.en
dc.languageuk
dc.subjectgreen synthesisen
dc.subjectcycling voltamperometryen
dc.subjectglassy carbonen
dc.subjectextracten
dc.titleЕлектрохімічна оцінка відновлювальної здатності рослинних екстрактівuk
dc.title.alternativeElectrochemical evaluation of reducing ability of plant extracts
dc.typeArticle
local.contributor.altauthorVasyliev, G. S.en
local.contributor.altauthorVorobyova, V. I.en
local.contributor.altauthorKuzmenko, O. M.en
local.contributor.altauthorSkiba, M. I.en
local.sourcePromising materials and processes in applied electrochemistry – 2019uk
local.subject.method0
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