Shinji Kohara
(National Institute for Materials Science)
;
Shuya Sato
;
Motoki Shiga
(National Institute for Materials Science)
;
Yohei Onodera
(National Institute for Materials Science)
;
Hirokazu Masai
;
Toru Wakihara
;
Atsunobu Masuno
(National Institute for Materials Science)
;
Akihiko Hirata
;
Naoto Kitamura
;
Yasushi Idemoto
;
Koji Kimura
;
Koichi Hayashi
Description:
(abstract)The topology of materials is an important structural feature, which cannot be determined from crystallographic information in crystalline materials and pairwise correlations in disordered materials. We extracted the density-driven modification of the topology of tetrahedral silica (SiO2) crystals, siliceous zeolites (MFI, SOD, and FAU), and glass on the basis of the results of ring size, homology, cavity distribution, and tetrahedral order analyses. A series of analyses confirmed a universal feature that oxygen atoms are buckled in –Si–O– rings except in some symmetrical even-numbered rings such as twelvefold (Si–O)12 rings in coesite and SOD/FAU. In addition, large cavities were found in β-cristobalites and siliceous zeolites, whose cavity volume ratios are much higher than that of SiO2 glass. A comparison between α- and β-cristobalite indicated that the arrangement of oxygen atoms governs the formation of cavities. Moreover, a topological similarity between glass and MFI was found, in which fivefold and sevenfold rings are observed in the King ring size distribution. This feature can break their symmetry because these odd-number rings are not observed in other SiO2 polymorphs. Moreover, it was suggested that SiO2 glass is crystallographically an analogue to β-cristobalite in terms of the position of the diffraction peak, but topologically an analogue to MFI. It is demonstrated that the topological analyses provide us with crucial information for the design of novel nonequilibrium materials at high pressures and/or high temperatures by tuning density.
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Keyword: glass, structure, topology
Date published: 2024-12-01
Publisher: Ceramic Society of Japan
Journal:
Funding:
Manuscript type: Publisher's version (Version of record)
MDR DOI:
First published URL: https://doi.org/10.2109/jcersj2.24093
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Updated at: 2024-12-04 14:53:24 +0900
Published on MDR: 2024-12-04 14:53:24 +0900
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