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Nanostructured Systems Based on Magnesium Oxide: The Synthesis and Application in Sorption and Catalytic Processes Review

Journal Russian Chemical Bulletin
ISSN: 1066-5285 , E-ISSN: 1573-9171
Output data Year: 2023, Volume: 72, Number: 2, Pages: 335—344 Pages count : 10 DOI: 10.1007/s11172-023-3803-3
Tags nanocrystalline magnesium oxide, sol—gel synthesis, destructive sorption of freons, catalytic decomposition of organochlorine compounds, oxidative dehydrogenation of alkanes, CO oxidation, chemical looping
Authors Vedyagin A.A. 1
Affiliations
1 Federal Research Center Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences, 5 prosp. Akad. Lavrentieva, 630090 Novosibirsk, Russian Federation

Funding (1)

1 Ministry of Science and Higher Education of the Russian Federation 0239-2021-0010

Abstract: Unique properties of nanocrystalline magnesium oxide make it attractive for application in various areas of science and technology. Doping the MgO matrix with transition metal oxides allows one to significantly extend the range of possible applications. The review presents examples of efficient use of nanostructured MgO-based systems in sorption and catalytic processes. The advantages are demonstrated of the sol—gel technologies used to synthesize MgO-based nanomaterials with large specific surface area, small crystallite size, and uniform distribution of transition metal oxides in the magnesium oxide matrix.
Cite: Vedyagin A.A.
Nanostructured Systems Based on Magnesium Oxide: The Synthesis and Application in Sorption and Catalytic Processes
Russian Chemical Bulletin. 2023. V.72. N2. P.335—344. DOI: 10.1007/s11172-023-3803-3 WOS Scopus РИНЦ AN OpenAlex
Original: Ведягин А.А.
Наноструктурированные системы на основе оксида магния: синтез и применение в сорбционных и каталитических процессах
Известия Академии наук. Серия химическая. 2023. Т.72. №2. С.335-344. РИНЦ
Dates:
Submitted: Mar 30, 2022
Accepted: May 25, 2022
Published print: Feb 1, 2023
Published online: Apr 12, 2023
Identifiers:
Web of science: WOS:000989930300003
Scopus: 2-s2.0-85153287771
Elibrary: 53832978
Chemical Abstracts: 2023:772617
OpenAlex: W4365393063
Citing:
DB Citing
Scopus 2
Elibrary 2
Web of science 2
OpenAlex 2
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