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High-pressure Raman investigation of high index facets bounded a-Fe2O3 pseudocubic crystals

Abstract: High index facet bounded a-Fe2O3 pseudocubic crystals has gained the attention of the scientific community due to its promising electrochemical sensing response towards aqueous ammonia. The structural stability of ?-Fe2O3 pseudocubic crystals is investigated through high-pressure Raman spectroscopy up to 22.2 GPa, and those results are compared with our ab initio theoretical calculations. The symmetry of the experimental Raman-active modes has been assigned by comparison with theoretical data. In addition to the Raman-active modes, two additional Raman features are also detected, whose intensity increases with compression. The origin of these two additional peaks addressed in this study, reveals a strong dependence on the geometry and the low dimensionality as the most plausible explanation.

 Authorship: Bushiri M.J., Gopi D.N., Monteseguro V., Sans J.A.,

 Fuente: Journal of Physics Condensed Matter, 2020, 33(8), 085701

 Publisher: IOP Publishing

 Publication date: 01/12/2020

 No. of pages: 9

 Publication type: Article

 DOI: 10.1088/1361-648X/abcb11

 ISSN: 0953-8984,1361-648X

 Spanish project: MAT2016-75586-C4-2/3-P

 Publication Url: https://doi.org/10.1088/1361-648X/abcb11

Authorship

BUSHIRI, M JUNAID

GOPI, DIVYA NERAVATHU

SANS, JUAN ANGEL