Seven-coordinated Silicon in a SiO2He Compound Formed under the Extreme Conditions of Planetary Interiors
Shicong Ding, Pan Zhang, Kang Yang, Cailong Liu, Jian Hao, Wenwen Cui,, Jingming Shi, and Yinwei Li

TL;DR
This study predicts a novel SiO2He compound with seven-coordinated silicon stable under extreme high-pressure conditions, expanding understanding of silica structures relevant to planetary interiors.
Contribution
The paper introduces the first theoretical evidence of a stable SiO2He compound containing SiO7 polyhedra at high pressures, a previously unknown silica configuration.
Findings
Prediction of stable SiO2He with SiO7 polyhedra at >607 GPa
Demonstration of stability across 0-9000 K and high pressures
Implications for planetary interior models and silicide discovery
Abstract
Changes in atomic coordination numbers at high pressures are fundamental to condensed-matter physics because they initiate the emergence of unexpected structures and phenomena. Silicon is capable of forming eight-, nine-, and ten-coordinated structures under compression,in addition to the usual six-coordinated structures. The missing seven-coordinated silicon remains an open question, but here our theoretical study provides evidence for its existence at high pressures. A combination of a crystal-structure prediction method and first-principles calculations allowed prediction of a stable SiO2He compound containing unique SiO7 polyhedrons, which is a configuration unknown in any proposed silica phase. Consequently, seven-coordinated SiO7 is a possible form of silica at high pressures. Further calculations indicate that the SiO2He phase remains energetically stable with a solid character…
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Taxonomy
TopicsGeological Studies and Exploration · Geological and Geochemical Analysis
