Low Temperature Transitional Aluminas: Structure Specifics and Related X-ray Diffraction Features Full article
| Journal |
Crystals
, E-ISSN: 2073-4352 |
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|---|---|---|---|
| Output data | Year: 2021, Volume: 11, Number: 6, Article number : 690, Pages count : 11 DOI: 10.3390/cryst11060690 | ||
| Tags | 3D nanostructure; metastable aluminum oxides; XRD; Debye Scattering Equation; planar defects | ||
| Authors |
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| Affiliations |
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Funding (2)
| 1 | Russian Science Foundation | 19-73-00101 |
| 2 | Russian Foundation for Basic Research | 20-43-540015 |
Abstract:
Despite the fact that metastable aluminum oxides are actively used in industry, there is a discrepancy in the literature regarding their crystal structure. All this leads to difficulties in data interpretation and, as a consequence, classification problems. This work is aimed at solving these tasks. The main features of powder X-ray diffraction of typical samples of three Al2O3 polymorphs (γ-, χ-, η-) are analyzed. Specifics and fundamental differences in X-ray scattering and their relationship with the structural organization at the nanostructure level are clearly shown. The work demonstrates the possibilities of analyzing experimental powder X-ray diffraction data using a modern approach based on the Debye Scattering Equation for studying the organization of such complex systems.
Cite:
Yatsenko D.A.
, Pakharukova V.P.
, Tsybulya S.V.
Low Temperature Transitional Aluminas: Structure Specifics and Related X-ray Diffraction Features
Crystals. 2021.
V.11. N6. 690
:1-11. DOI: 10.3390/cryst11060690
WOS
Scopus
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OpenAlex
Low Temperature Transitional Aluminas: Structure Specifics and Related X-ray Diffraction Features
Files:
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Dates:
| Submitted: | Apr 28, 2021 |
| Accepted: | Jun 11, 2021 |
| Published print: | Jun 16, 2021 |
| Published online: | Jun 16, 2021 |
Identifiers:
| Web of science: | WOS:000666932500001 |
| Scopus: | 2-s2.0-85108872299 |
| Elibrary: | 46849995 |
| Chemical Abstracts: | 2021:1535316 |
| Chemical Abstracts (print): | 176:27479 |
| OpenAlex: | W3166369305 |