Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17
The crystal structure at room temperature of the perovskite-related Ca5Nb4TiO17 has been determined by means of single x-ray diffraction. The crystal structure was derived using conventional 3-dimesional crystallography approach and superspace approach. Using standard crystallography, the crystal st...
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oai:animorepository.dlsu.edu.ph:faculty_research-72902022-07-26T02:15:17Z Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 Guevarra, Jonathan van Smaalen, Sander Schönleber, Andreas Lichtenberg, Frank The crystal structure at room temperature of the perovskite-related Ca5Nb4TiO17 has been determined by means of single x-ray diffraction. The crystal structure was derived using conventional 3-dimesional crystallography approach and superspace approach. Using standard crystallography, the crystal structure is described as consisting of slabs of corner-sharing octahedral which are five layers wide separated by additional planes of oxygen atoms. In the superspace approach, the slabs are interpreted as sequential stacking of layers of atomic domains, and the actual crystal structure is obtained as modulation of the basic layered structure. The efficiency of the superspace approach is demonstrated by structure refinements. Superspace refinements have produced structural features that are identical to what have been obtained from structure refinements in 3-dimensional space. 2006-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/6446 Faculty Research Work Animo Repository Crystallography Perovskite (Mineral)—Structure Physics |
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Crystallography Perovskite (Mineral)—Structure Physics Guevarra, Jonathan van Smaalen, Sander Schönleber, Andreas Lichtenberg, Frank Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 |
description |
The crystal structure at room temperature of the perovskite-related Ca5Nb4TiO17 has been determined by means of single x-ray diffraction. The crystal structure was derived using conventional 3-dimesional crystallography approach and superspace approach. Using standard crystallography, the crystal structure is described as consisting of slabs of corner-sharing octahedral which are five layers wide separated by additional planes of oxygen atoms. In the superspace approach, the slabs are interpreted as sequential stacking of layers of atomic domains, and the actual crystal structure is obtained as modulation of the basic layered structure. The efficiency of the superspace approach is demonstrated by structure refinements. Superspace refinements have produced structural features that are identical to what have been obtained from structure refinements in 3-dimensional space. |
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text |
author |
Guevarra, Jonathan van Smaalen, Sander Schönleber, Andreas Lichtenberg, Frank |
author_facet |
Guevarra, Jonathan van Smaalen, Sander Schönleber, Andreas Lichtenberg, Frank |
author_sort |
Guevarra, Jonathan |
title |
Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 |
title_short |
Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 |
title_full |
Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 |
title_fullStr |
Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 |
title_full_unstemmed |
Standard crystallographic and superspace descriptions of the crystal structure of Ca5Nb4TiO17 |
title_sort |
standard crystallographic and superspace descriptions of the crystal structure of ca5nb4tio17 |
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Animo Repository |
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2006 |
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https://animorepository.dlsu.edu.ph/faculty_research/6446 |
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1767196541962944512 |