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arxiv: 1502.07012 · v1 · pith:RY6BRCPFnew · submitted 2015-02-25 · ⚛️ physics.comp-ph · cond-mat.mtrl-sci

Prediction of new thermodynamically stable aluminum oxides

classification ⚛️ physics.comp-ph cond-mat.mtrl-sci
keywords compoundsstableal2o3al4o7alo2aluminachemicalformation
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Recently, it has been shown that under pressure, unexpected and counterintuitive chemical compounds become stable. Laser shock experiments (A. Rode, unpublished) on alumina (Al2O3) have shown non-equilibrium decomposition of alumina with the formation of free Al and a mysterious transparent phase. Inspired by these observations, with have explored the possibility of the formation of new chemical compounds in the system Al-O. Using the variable-composition structure prediction algorithm USPEX, in addition to the well-known Al2O3, we have found two extraordinary compounds Al4O7 and AlO2 to be thermodynamically stable in the pressure range 330-443 GPa and above 332 GPa, respectively. Both of these compounds at the same time contain oxide O2- and peroxide O22- ions, and both are insulating. Peroxo-groups are responsible for gap states, which significantly reduce the electronic band gap of both Al4O7 and AlO2.

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