Mechanochemical recrystallization: Forgotten basics and new possibilities

The task of this article is to update, develop and introduce into scientific practice the method of "mechanochemical recrystallization" in solid-phase systems with small additives of the liquid phase of the solvent and solid-phase precursors to stabilize the formed nanoparticles. The essen...

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Main Authors: Farit Kh. Urakaev, Natalya V. Khan, Almagul I. Niyazbayeva, Dinar N. Zharlykasimova, Mukhambetkali M. Burkitbayev
Format: Article
Language:English
Published: Uralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. Elʹcina 2023-06-01
Series:Chimica Techno Acta
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Online Access:https://chimicatechnoacta.ru/article/view/6705
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author Farit Kh. Urakaev
Natalya V. Khan
Almagul I. Niyazbayeva
Dinar N. Zharlykasimova
Mukhambetkali M. Burkitbayev
author_facet Farit Kh. Urakaev
Natalya V. Khan
Almagul I. Niyazbayeva
Dinar N. Zharlykasimova
Mukhambetkali M. Burkitbayev
author_sort Farit Kh. Urakaev
collection DOAJ
description The task of this article is to update, develop and introduce into scientific practice the method of "mechanochemical recrystallization" in solid-phase systems with small additives of the liquid phase of the solvent and solid-phase precursors to stabilize the formed nanoparticles. The essence of this method is shown using the example of mechanical activation of the S–AgNO3–NH4X system, where X = Cl, Br, I, with the addition of dimethyl sulfoxide (DMSO), and the resulting mechanochemical synthesis of sulfur-containing nanocomposites S/AgX with the controlled content of sulfur nanoparticles (nanosulfur). The predetermined content of nanosulfur in nanocomposites is ensured by a continuous process of dissolution-crystallization (recrystallization) of starting sulfur in the DMSO medium in a mechanochemical reactor. The proposed technical solution made it possible to obtain S/AgX nanocomposites by a single mechanical treatment of powder precursors – AgNO3, NH4Х, NH4NO3 (diluent), commercial sulfur and DMSO in planetary ball mills with various milling tools. The method also includes washing the water-soluble components of mechanosynthesis.
format Article
id doaj-art-10d21ae8fee248e98e4fccb9d4aa7e6e
institution Kabale University
issn 2411-1414
language English
publishDate 2023-06-01
publisher Uralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. Elʹcina
record_format Article
series Chimica Techno Acta
spelling doaj-art-10d21ae8fee248e98e4fccb9d4aa7e6e2024-12-25T09:36:55ZengUralʹskij federalʹnyj universitet imeni pervogo Prezidenta Rossii B.N. ElʹcinaChimica Techno Acta2411-14142023-06-0110210.15826/chimtech.2023.10.2.134895Mechanochemical recrystallization: Forgotten basics and new possibilitiesFarit Kh. Urakaev0Natalya V. Khan1Almagul I. Niyazbayeva2Dinar N. Zharlykasimova3Mukhambetkali M. Burkitbayev4Sobolev Institute of Geology and Mineralogy SB RASAl-Farabi Kazakh National UniversityAl-Farabi Kazakh National UniversityAl-Farabi Kazakh National UniversityAl-Farabi Kazakh National UniversityThe task of this article is to update, develop and introduce into scientific practice the method of "mechanochemical recrystallization" in solid-phase systems with small additives of the liquid phase of the solvent and solid-phase precursors to stabilize the formed nanoparticles. The essence of this method is shown using the example of mechanical activation of the S–AgNO3–NH4X system, where X = Cl, Br, I, with the addition of dimethyl sulfoxide (DMSO), and the resulting mechanochemical synthesis of sulfur-containing nanocomposites S/AgX with the controlled content of sulfur nanoparticles (nanosulfur). The predetermined content of nanosulfur in nanocomposites is ensured by a continuous process of dissolution-crystallization (recrystallization) of starting sulfur in the DMSO medium in a mechanochemical reactor. The proposed technical solution made it possible to obtain S/AgX nanocomposites by a single mechanical treatment of powder precursors – AgNO3, NH4Х, NH4NO3 (diluent), commercial sulfur and DMSO in planetary ball mills with various milling tools. The method also includes washing the water-soluble components of mechanosynthesis.https://chimicatechnoacta.ru/article/view/6705mechanical activationsulfursilver halidesdimethyl sulfoxiderecrystallizationnanocomposites
spellingShingle Farit Kh. Urakaev
Natalya V. Khan
Almagul I. Niyazbayeva
Dinar N. Zharlykasimova
Mukhambetkali M. Burkitbayev
Mechanochemical recrystallization: Forgotten basics and new possibilities
Chimica Techno Acta
mechanical activation
sulfur
silver halides
dimethyl sulfoxide
recrystallization
nanocomposites
title Mechanochemical recrystallization: Forgotten basics and new possibilities
title_full Mechanochemical recrystallization: Forgotten basics and new possibilities
title_fullStr Mechanochemical recrystallization: Forgotten basics and new possibilities
title_full_unstemmed Mechanochemical recrystallization: Forgotten basics and new possibilities
title_short Mechanochemical recrystallization: Forgotten basics and new possibilities
title_sort mechanochemical recrystallization forgotten basics and new possibilities
topic mechanical activation
sulfur
silver halides
dimethyl sulfoxide
recrystallization
nanocomposites
url https://chimicatechnoacta.ru/article/view/6705
work_keys_str_mv AT faritkhurakaev mechanochemicalrecrystallizationforgottenbasicsandnewpossibilities
AT natalyavkhan mechanochemicalrecrystallizationforgottenbasicsandnewpossibilities
AT almaguliniyazbayeva mechanochemicalrecrystallizationforgottenbasicsandnewpossibilities
AT dinarnzharlykasimova mechanochemicalrecrystallizationforgottenbasicsandnewpossibilities
AT mukhambetkalimburkitbayev mechanochemicalrecrystallizationforgottenbasicsandnewpossibilities