СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3

Serious of Ce-substituted lanthanum-strontium man-ganites La0.7–xSr0.3CexMnO3 (x = 0–0.2) nanoparticles were synthesized by sol-gel method with further heat treatment of precursors at 800 °C. Crystallographic properties of obtained nanoparticles were investiga-ted by X-ray diffraction method. Accord...

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Date:2019
Main Authors: Timashkov, Illia, Shlapa, Yulia, Solopan, Sergiy, Belous, Anatoliy
Format: Article
Language:English
Published: V.I.Vernadsky Institute of General and Inorganic Chemistry 2019
Online Access:https://ucj.org.ua/index.php/journal/article/view/80
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Ukrainian Chemistry Journal
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spelling oai:ojs2.1444248.nisspano.web.hosting-test.net:article-802019-11-04T11:07:53Z SYNTHESIS AND CRYSTALLOCHEMICAL PROPERTIES OF Ce-SUBSTITUTED NANOPARTICLES OF MANGANITE (La,Sr)MnO3 СИНТЕЗ И КРИСТАЛЛОХИМИЧЕСКИЕ СВОЙСТВА ЦЕРИЙ-ЗАМЕЩЕННЫХ НАНОЧАСТИЦ МАНГАНИТА (La,Sr)MnO3 СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3 Timashkov, Illia Shlapa, Yulia Solopan, Sergiy Belous, Anatoliy manganite, perovskite, solid solution, crystallochemical properties, magnetic fluid, specific losses of power. Serious of Ce-substituted lanthanum-strontium man-ganites La0.7–xSr0.3CexMnO3 (x = 0–0.2) nanoparticles were synthesized by sol-gel method with further heat treatment of precursors at 800 °C. Crystallographic properties of obtained nanoparticles were investiga-ted by X-ray diffraction method. According to XRD data, it was established that the substitution of lan-thanum ions by cerium in the crystalline structure and formation of single-phased nanoparticles occurs only up to 5 % mol. of Ce regardless of the heating temperature. Linear decreasing the cell volume of nanoparticles in this concentration range of Ce satis-fies the Vegard law and indicates on the formation of a continuous series of solid solutions with the dis-torted perovskite up to 5 % of Ce. At higher concen-trations of Ce there are additional peaks on the XRD patterns, which point on the formation of an addi-tional phase of CeO2. According to TEM studies, it was calculated that the average size of was 30–40 nm. To estimate heating efficiency of synthesized nanoparticles in the alternating magnetic field, mag-netic fluids based on the synthesized nanoparticles and aqueous dextran solution were prepared. It was shown that they effectively heated up to controlled temperatures in an alternating magnetic field, and their heating efficiency was directly proportional to the increase of the concentration of cerium. Accor-ding to the results of the complex studies, it was shown the possibility to synthesize single-phase Ce-substituted nanoparticles of manganite with a pe-rovskite structure. It was established that cerium does not significantly influence on the change of magnetic properties of such nanoparticles and they are promising for further investigations as the in-ducers of magnetic hyperthermia, as well as for the biological tests. V.I.Vernadsky Institute of General and Inorganic Chemistry 2019-10-16 Article Article Inorganic Chemistry Неорганическая химия Неорганічна хімія application/pdf https://ucj.org.ua/index.php/journal/article/view/80 10.33609/0041-6045.85.9.2019.17-24 Ukrainian Chemistry Journal; Vol. 85 No. 9 (2019): Ukrainian Chemistry Journal; 17-24 Украинский химический журнал; Том 85 № 9 (2019): Украинский химический журнал; 17-24 Український хімічний журнал; Том 85 № 9 (2019): Український хімічний журнал; 17-24 2708-129X 2708-1281 en https://ucj.org.ua/index.php/journal/article/view/80/53
institution Ukrainian Chemistry Journal
baseUrl_str
datestamp_date 2019-11-04T11:07:53Z
collection OJS
language English
topic_facet manganite
perovskite
solid solution
crystallochemical properties
magnetic fluid
specific losses of power.
format Article
author Timashkov, Illia
Shlapa, Yulia
Solopan, Sergiy
Belous, Anatoliy
spellingShingle Timashkov, Illia
Shlapa, Yulia
Solopan, Sergiy
Belous, Anatoliy
СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3
author_facet Timashkov, Illia
Shlapa, Yulia
Solopan, Sergiy
Belous, Anatoliy
author_sort Timashkov, Illia
title СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3
title_short СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3
title_full СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3
title_fullStr СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3
title_full_unstemmed СИНТЕЗ ТА КРИСТАЛОХІМІЧНІ ВЛАСТИВОСТІ ЦЕРІЙ-ЗАМІЩЕНИХ НАНОЧАСТИНОК МАНГАНІТУ (La,Sr)MnO3
title_sort синтез та кристалохімічні властивості церій-заміщених наночастинок манганіту (la,sr)mno3
title_alt SYNTHESIS AND CRYSTALLOCHEMICAL PROPERTIES OF Ce-SUBSTITUTED NANOPARTICLES OF MANGANITE (La,Sr)MnO3
СИНТЕЗ И КРИСТАЛЛОХИМИЧЕСКИЕ СВОЙСТВА ЦЕРИЙ-ЗАМЕЩЕННЫХ НАНОЧАСТИЦ МАНГАНИТА (La,Sr)MnO3
description Serious of Ce-substituted lanthanum-strontium man-ganites La0.7–xSr0.3CexMnO3 (x = 0–0.2) nanoparticles were synthesized by sol-gel method with further heat treatment of precursors at 800 °C. Crystallographic properties of obtained nanoparticles were investiga-ted by X-ray diffraction method. According to XRD data, it was established that the substitution of lan-thanum ions by cerium in the crystalline structure and formation of single-phased nanoparticles occurs only up to 5 % mol. of Ce regardless of the heating temperature. Linear decreasing the cell volume of nanoparticles in this concentration range of Ce satis-fies the Vegard law and indicates on the formation of a continuous series of solid solutions with the dis-torted perovskite up to 5 % of Ce. At higher concen-trations of Ce there are additional peaks on the XRD patterns, which point on the formation of an addi-tional phase of CeO2. According to TEM studies, it was calculated that the average size of was 30–40 nm. To estimate heating efficiency of synthesized nanoparticles in the alternating magnetic field, mag-netic fluids based on the synthesized nanoparticles and aqueous dextran solution were prepared. It was shown that they effectively heated up to controlled temperatures in an alternating magnetic field, and their heating efficiency was directly proportional to the increase of the concentration of cerium. Accor-ding to the results of the complex studies, it was shown the possibility to synthesize single-phase Ce-substituted nanoparticles of manganite with a pe-rovskite structure. It was established that cerium does not significantly influence on the change of magnetic properties of such nanoparticles and they are promising for further investigations as the in-ducers of magnetic hyperthermia, as well as for the biological tests.
publisher V.I.Vernadsky Institute of General and Inorganic Chemistry
publishDate 2019
url https://ucj.org.ua/index.php/journal/article/view/80
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