CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND

<p>The object of research is the crystal structure of the a phase of K<sub>3</sub>VF<sub>6 </sub>compound. From the analysis of the literature it follows that there are three modifications of this compound – the a phase, the b phase and the g phase. There are also sever...

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Main Author: Viktor Zavodyannyi
Format: Article
Language:English
Published: Scientific Route OÜ 2020-03-01
Series:EUREKA: Physics and Engineering
Subjects:
Online Access:http://eu-jr.eu/engineering/article/view/1175
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spelling doaj-88bd48d7bbe840ddb547553d6463455c2020-11-25T01:50:53ZengScientific Route OÜEUREKA: Physics and Engineering2461-42542461-42622020-03-0102718210.21303/2461-4262.2020.001175975CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUNDViktor Zavodyannyi0Kherson State Agrarian University<p>The object of research is the crystal structure of the a phase of K<sub>3</sub>VF<sub>6 </sub>compound. From the analysis of the literature it follows that there are three modifications of this compound – the a phase, the b phase and the g phase. There are also several methods for preparing this compound. One of the problem areas is the existence of a large number of diffraction spectra obtained with the Bragg-Bertrand survey geometry in the PDF-2 database for 2004. There is also no complete data on the crystal structure of this compound. A structural model is proposed for the diffraction spectrum of the compound under the number 00-037-0738.</p><p>The study used the PDF-2 database for 2004. As well as the HighScorePlus program, which allows to refine the microstructural parameters of the structural model by the Rietveld method.</p><p>As a result, it is found that this diffraction spectrum of the compound under study can correspond to the following structural model: tetragonal system with lattice periods a=12.3524(4) A<sup>0</sup>; b=12.3524(4) A<sup>0</sup>; c=16.7447(7)A<sup>0</sup>. A possible spatial symmetry group is I41/a (88).</p>Analyzing the obtained results, it can be assumed that the studied structure of the a phase of the compound crystallizes in its own structural typehttp://eu-jr.eu/engineering/article/view/1175x-ray diffraction analysisbragg-bertrand survey geometryrietveld methodcrystal structurek3vf6 composition
collection DOAJ
language English
format Article
sources DOAJ
author Viktor Zavodyannyi
spellingShingle Viktor Zavodyannyi
CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND
EUREKA: Physics and Engineering
x-ray diffraction analysis
bragg-bertrand survey geometry
rietveld method
crystal structure
k3vf6 composition
author_facet Viktor Zavodyannyi
author_sort Viktor Zavodyannyi
title CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND
title_short CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND
title_full CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND
title_fullStr CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND
title_full_unstemmed CRYSTAL STRUCTURE ANALYSIS OF K3VF6 COMPOUND
title_sort crystal structure analysis of k3vf6 compound
publisher Scientific Route OÜ
series EUREKA: Physics and Engineering
issn 2461-4254
2461-4262
publishDate 2020-03-01
description <p>The object of research is the crystal structure of the a phase of K<sub>3</sub>VF<sub>6 </sub>compound. From the analysis of the literature it follows that there are three modifications of this compound – the a phase, the b phase and the g phase. There are also several methods for preparing this compound. One of the problem areas is the existence of a large number of diffraction spectra obtained with the Bragg-Bertrand survey geometry in the PDF-2 database for 2004. There is also no complete data on the crystal structure of this compound. A structural model is proposed for the diffraction spectrum of the compound under the number 00-037-0738.</p><p>The study used the PDF-2 database for 2004. As well as the HighScorePlus program, which allows to refine the microstructural parameters of the structural model by the Rietveld method.</p><p>As a result, it is found that this diffraction spectrum of the compound under study can correspond to the following structural model: tetragonal system with lattice periods a=12.3524(4) A<sup>0</sup>; b=12.3524(4) A<sup>0</sup>; c=16.7447(7)A<sup>0</sup>. A possible spatial symmetry group is I41/a (88).</p>Analyzing the obtained results, it can be assumed that the studied structure of the a phase of the compound crystallizes in its own structural type
topic x-ray diffraction analysis
bragg-bertrand survey geometry
rietveld method
crystal structure
k3vf6 composition
url http://eu-jr.eu/engineering/article/view/1175
work_keys_str_mv AT viktorzavodyannyi crystalstructureanalysisofk3vf6compound
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