Structural Study of Bimetallic Catalytic Nanosystems Containing Precious Metals by XAFS Spectroscopy Conference Abstracts
Conference |
International Conference "Synchrotron and Free electron laser Radiation: generation and application" 13-17 Jul 2020 , Novosibirsk |
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Source | Synchrotron and Free electron laser Radiation: generation and application (SFR-2020), July 13 – 16, 2020 : Book of Abstracts Compilation, ИЯФ СО РАН. Новосибирск.2020. 90 c. ISBN 9785904968076. РИНЦ |
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Output data | Year: 2020, Article number : 159, Pages count : 2 | ||||||||
Authors |
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Affiliations |
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Funding (3)
1 | Russian Foundation for Basic Research | 18-03-01251 |
2 | Russian Foundation for Basic Research | 19-05-50046 (АААА-А20-120011790071-5) |
3 | Ministry of Science and Higher Education of the Russian Federation | 05.621.21.0022 (RFMEFI62119X0022) (АААА-А20-120072290017-9) |
Abstract:
This work presents the results of a study of the local structure of the active component of mono-, bi-metallic low-percentage (~1%) catalysts (containing Pt, Au, Pd, Ru) stabilized on oxide carriers using XAFS method (XANES/EXAFS). Studying the nature of nano-forms of noble metal stabilization is promising for creating effective catalysts for various applications, including catalytic systems for alternative energy applications. The development of synthesis methods can lead to a significant economic gain, due to the reduction of the metal content and optimization of the catalytic properties of the system. Model catalysts were prepared from mono-and bimetallic complexes, with varying synthesis methods: sol-gel, ion exchange, impregnation, reducing modes, and the nature of carriers. XAFS (XANES/EXAFS) spectra (Pt-L3, Au-L3, Pd-K, Ru-K) of studied samples were recorded at SSTRC, Novosibirsk. Genesis of the local structure of the
active component was studied, including the study of oxidized precursors and catalysts after reducing and activation. It is established that depending on the background, it is possible to form various nanoscale forms of noble metals localized on the surface of the oxide carrier. Additionally, the samples were studied by XRD, XPS, XRFA, HRTEM. Variants of possible structural models are considered in detail.
Cite:
Kriventsov V.V.
, Volodin A.M.
, Novgorodov B.N.
, Zyuzin D.A.
, Aksenov D.G.
, Ivanov D.P.
, Iost K.N.
, Shlyapin D.A.
, Nikolaev S.A.
, Chistyakov A.V.
, Tsodikov M.V.
Structural Study of Bimetallic Catalytic Nanosystems Containing Precious Metals by XAFS Spectroscopy
In compilation Synchrotron and Free electron laser Radiation: generation and application (SFR-2020), July 13 – 16, 2020 : Book of Abstracts. – ИЯФ СО РАН., 2020. – C.85-86. – ISBN 9785904968076. РИНЦ
Structural Study of Bimetallic Catalytic Nanosystems Containing Precious Metals by XAFS Spectroscopy
In compilation Synchrotron and Free electron laser Radiation: generation and application (SFR-2020), July 13 – 16, 2020 : Book of Abstracts. – ИЯФ СО РАН., 2020. – C.85-86. – ISBN 9785904968076. РИНЦ
Identifiers:
Elibrary: | 65852079 |
Citing:
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