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Computational searches for crystal structures of dioxides of group 14 elements (CO2, SiO2, GeO2) under ultrahigh pressure.


ABSTRACT: In this study, we focused on the effect of pressure on the crystal structures of dioxides of group 14 elements, i.e. SiO2, GeO2, and CO2. Systematic searches for their crystal structures using the artificial force induced reaction method generated 219 and 147, 102 and 63, and 148 and 76 structures for SiO2, GeO2, and CO2, respectively, at 1 and 106 atm. At 1 atm, cristobalite-like, quartz, anatase-like, and stishovite were stable structures for SiO2 and GeO2. At 106 atm, structures of stishovite and CaCl2 type were relatively stable for SiO2 and GeO2. At 1 atm of CO2, molecular crystals were the most stable, whereas, quartz-like and cristobalite-like structures were obtained as stable structures at 106 atm. We discuss these pressure dependent structural variations systematically using the obtained structural dataset.

SUBMITTER: Nabata H 

PROVIDER: S-EPMC9054535 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Computational searches for crystal structures of dioxides of group 14 elements (CO<sub>2</sub>, SiO<sub>2</sub>, GeO<sub>2</sub>) under ultrahigh pressure.

Nabata Hitoshi H   Takagi Makito M   Saita Kenichiro K   Maeda Satoshi S  

RSC advances 20200609 37


In this study, we focused on the effect of pressure on the crystal structures of dioxides of group 14 elements, <i>i.e.</i> SiO<sub>2</sub>, GeO<sub>2</sub>, and CO<sub>2</sub>. Systematic searches for their crystal structures using the artificial force induced reaction method generated 219 and 147, 102 and 63, and 148 and 76 structures for SiO<sub>2</sub>, GeO<sub>2</sub>, and CO<sub>2</sub>, respectively, at 1 and 10<sup>6</sup> atm. At 1 atm, cristobalite-like, quartz, anatase-like, and stish  ...[more]

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