کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
1811645 | 1025599 | 2011 | 9 صفحه PDF | دانلود رایگان |

Detailed ab initio calculations of the structural, electronic, optical and elastic properties of two crystals – magnesite (MgCO3) and calcite (CaCO3) – are reported in the present paper. Both compounds are important natural minerals, playing an important role in the carbon dioxide cycling. The optimized crystal structures, band gaps, density of states diagrams, elastic constants, optical absorption spectra and refractive indexes dependence on the wavelength all have been calculated and compared, when available, with literature data. Both crystals are indirect band compounds, with calculated band gaps of 5.08 eV for MgCO3 and 5.023 eV for CaCO3. Both values are underestimated by approximately 1.0 eV with respect to the experimental data. Although both crystals have the same structure, substitution of Mg by Ca ions leads to certain differences, which manifest themselves in noticeable change in the electronic bands profiles and widths, shape of the calculated absorption spectra, and values of the elastic constants. Response of both crystals to the applied hydrostatic pressure was analyzed in the pressure range of phase stability, variations of the lattice parameters and characteristic interionic distances were considered. The obtained dependencies of lattice constants and calculated band gap on pressure can be used for prediction of properties of these two hosts at elevated pressures that occur in the Earth's mantle.
Research highlights
► Ab initio calculations of physical properties of MgCO3 and CaCO3 were performed.
► Changes of the calculated properties with replacement of Mg by Ca were followed.
► Pressure dependence of the structural and electronic properties was analyzed.
► Good agreement with experimental data was demonstrated.
Journal: Physica B: Condensed Matter - Volume 406, Issue 4, 15 February 2011, Pages 1004–1012