Determining the Phase Composition of Copper Ferrite Samples by a Standardless Differential Dissolution Method Full article
Journal |
Inorganic Materials
ISSN: 0020-1685 , E-ISSN: 1608-3172 |
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Output data | Year: 2023, Volume: 59, Pages: 44–51 Pages count : 8 DOI: 10.1134/S0020168523010156 | ||
Tags | differential dissolution method, phase composition, stoichiometry, spinel structure | ||
Authors |
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Affiliations |
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Funding (1)
1 | Ministry of Science and Higher Education of the Russian Federation | 0239-2021-0007 |
Abstract:
This paper reports the use of a differential dissolution stoichiographic method for determining the phase composition of catalysts for ammine borane hydrolysis and hydrothermolysis [1, 2]. Cu1–xFe2+xO4 copper ferrite samples were prepared using layer-by-layer combustion, dried, and then calcined at different temperatures. We describe conditions that make it possible to detect and quantitatively determine various phases in the composition of amorphous and crystalline materials with the spinel structure and compare differential dissolution and X-ray diffraction results.
Cite:
Pochtar’ A.A.
, Komova O.V.
, Netskina O.V.
Determining the Phase Composition of Copper Ferrite Samples by a Standardless Differential Dissolution Method
Inorganic Materials. 2023. V.59. P.44–51. DOI: 10.1134/S0020168523010156 WOS Scopus РИНЦ AN OpenAlex
Determining the Phase Composition of Copper Ferrite Samples by a Standardless Differential Dissolution Method
Inorganic Materials. 2023. V.59. P.44–51. DOI: 10.1134/S0020168523010156 WOS Scopus РИНЦ AN OpenAlex
Original:
Почтарь А.А.
, Комова О.В.
, Нецкина О.В.
Определение фазового состава образцов феррит–меди безэталонным методом дифференцирующего растворения
Неорганические материалы. 2023. Т.59. №1. С.46-53. DOI: 10.31857/S0002337X23010153 РИНЦ OpenAlex
Определение фазового состава образцов феррит–меди безэталонным методом дифференцирующего растворения
Неорганические материалы. 2023. Т.59. №1. С.46-53. DOI: 10.31857/S0002337X23010153 РИНЦ OpenAlex
Dates:
Submitted: | Jun 8, 2022 |
Accepted: | Aug 29, 2022 |
Published online: | Sep 19, 2023 |
Identifiers:
Web of science: | WOS:001107299800011 |
Scopus: | 2-s2.0-85171472527 |
Elibrary: | 56105050 |
Chemical Abstracts: | 2023:1959365 |
OpenAlex: | W4386860417 |
Citing:
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