СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ

AgEDTA complexonate was synthesized, the manner of coordination of the Argentum (I) ion to the functional groups of complexone was determined. It was found that the solid complex precipitates from the solution in the form of a fine powder. It is shown that the size and shape of nanoparticles of Arge...

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Бібліографічні деталі
Дата:2021
Автори: Berezhnytska, Оleksandra, Viktoriia, Semeniv, Karyna, Sikorska, Kamenska , Tetyana, Khrokalo, Ludmyla, Trunova, Olena
Формат: Стаття
Мова:English
Опубліковано: V.I.Vernadsky Institute of General and Inorganic Chemistry 2021
Онлайн доступ:https://ucj.org.ua/index.php/journal/article/view/279
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Назва журналу:Ukrainian Chemistry Journal

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Ukrainian Chemistry Journal
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spelling oai:ojs2.1444248.nisspano.web.hosting-test.net:article-2792021-03-26T10:29:24Z SYNTHESIS AND PROPERTIES OF NEW NANOSYSTEMS OF ARGENTUM СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ Berezhnytska, Оleksandra Viktoriia, Semeniv Karyna, Sikorska Kamenska , Tetyana Khrokalo, Ludmyla Trunova, Olena nanosystem, Argentum, EDTA, complexonate, bactericidal effect. AgEDTA complexonate was synthesized, the manner of coordination of the Argentum (I) ion to the functional groups of complexone was determined. It was found that the solid complex precipitates from the solution in the form of a fine powder. It is shown that the size and shape of nanoparticles of Argentum complexonate depend on the solvent-precipitator. A stable dispersed system based on the synthesized complexonate was obtained. The shape and position of the surface plasmon resonance bands confirm the presence of spherical nanoparticles with a size of 15–30 nm in both dispersed systems. Investigations of the biological activity of the powder of AgEDTA has shown that it has a high bactericidal effect against gram-positive bacteria. V.I.Vernadsky Institute of General and Inorganic Chemistry 2021-03-19 Article Article Physical chemistry Физическая xимия Фізична xімія application/pdf https://ucj.org.ua/index.php/journal/article/view/279 10.33609/2708-129X.87.02.2021.95-106 Ukrainian Chemistry Journal; Vol 87 No 2 (2021): Ukrainian Chemistry Journal; 95-106 Украинский химический журнал; Том 87 № 2 (2021): Украинский химический журнал; 95-106 Український хімічний журнал; Том 87 № 2 (2021): Український хімічний журнал; 95-106 2708-129X 2708-1281 en https://ucj.org.ua/index.php/journal/article/view/279/156
institution Ukrainian Chemistry Journal
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datestamp_date 2021-03-26T10:29:24Z
collection OJS
language English
topic_facet nanosystem
Argentum
EDTA
complexonate
bactericidal effect.
format Article
author Berezhnytska, Оleksandra
Viktoriia, Semeniv
Karyna, Sikorska
Kamenska , Tetyana
Khrokalo, Ludmyla
Trunova, Olena
spellingShingle Berezhnytska, Оleksandra
Viktoriia, Semeniv
Karyna, Sikorska
Kamenska , Tetyana
Khrokalo, Ludmyla
Trunova, Olena
СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ
author_facet Berezhnytska, Оleksandra
Viktoriia, Semeniv
Karyna, Sikorska
Kamenska , Tetyana
Khrokalo, Ludmyla
Trunova, Olena
author_sort Berezhnytska, Оleksandra
title СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ
title_short СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ
title_full СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ
title_fullStr СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ
title_full_unstemmed СИНТЕЗ ТА ВЛАСТИВОСТІ НОВИХ НАНОСИСТЕМ АРҐЕНТУМУ
title_sort синтез та властивості нових наносистем арґентуму
title_alt SYNTHESIS AND PROPERTIES OF NEW NANOSYSTEMS OF ARGENTUM
description AgEDTA complexonate was synthesized, the manner of coordination of the Argentum (I) ion to the functional groups of complexone was determined. It was found that the solid complex precipitates from the solution in the form of a fine powder. It is shown that the size and shape of nanoparticles of Argentum complexonate depend on the solvent-precipitator. A stable dispersed system based on the synthesized complexonate was obtained. The shape and position of the surface plasmon resonance bands confirm the presence of spherical nanoparticles with a size of 15–30 nm in both dispersed systems. Investigations of the biological activity of the powder of AgEDTA has shown that it has a high bactericidal effect against gram-positive bacteria.
publisher V.I.Vernadsky Institute of General and Inorganic Chemistry
publishDate 2021
url https://ucj.org.ua/index.php/journal/article/view/279
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AT kamenskatetyana synthesisandpropertiesofnewnanosystemsofargentum
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