TY - JOUR
T1 - First-principles analysis of vibrational modes of calcite, magnesite and dolomite
AU - Jiang, Cheng Lu
AU - Zeng, Wei
AU - Liu, Fu Sheng
AU - Tang, Bin
AU - Liu, Qi Jun
N1 - Publisher Copyright:
© 2019 Elsevier Ltd
PY - 2019/8
Y1 - 2019/8
N2 - Calcite, magnesite and dolomite are important in Earth's evolutionary history, so they are significant in sediments and biominerals. As we know, the experimental investigations of calcite, dolomite, magnesite with Raman spectra are widespread. In order to show microprocess about Raman spectra, the first-principles vibration calculations deserve further discussion. So, the first-principles density functional perturbation theory is employed to calculate the phonon dispersion, IR spectrum, Raman spectrum, thermodynamic properties and dielectric permittivity. The vibration modes of phonon dispersion curves are investigated through symmetry system. The vibration type from group theory is used to discuss the IR activity and Raman activity, where the minerals space group are R3¯c, R3¯c and R3¯ for clacite, magnesite and dolomite, respectively. The calculated phonon dispersions show that minerals with ionic and covalent bonds are dynamically stable. The vibration analysis of IR modes and Raman modes reveals the strongest covalent bond in (001) plane, and it can produce bigger shear modulus. In addition, the differently cationic masses have a little effect on thermodynamic and dielectric properties for minerals. The investigated results in this paper can promote the analysis of minerals at microscopic level, where the information of vibration can expound the stably combinative direction of electron cloud of minerals. So it can present the macroscopically mechanical property, which would help researchers to research earth mantle.
AB - Calcite, magnesite and dolomite are important in Earth's evolutionary history, so they are significant in sediments and biominerals. As we know, the experimental investigations of calcite, dolomite, magnesite with Raman spectra are widespread. In order to show microprocess about Raman spectra, the first-principles vibration calculations deserve further discussion. So, the first-principles density functional perturbation theory is employed to calculate the phonon dispersion, IR spectrum, Raman spectrum, thermodynamic properties and dielectric permittivity. The vibration modes of phonon dispersion curves are investigated through symmetry system. The vibration type from group theory is used to discuss the IR activity and Raman activity, where the minerals space group are R3¯c, R3¯c and R3¯ for clacite, magnesite and dolomite, respectively. The calculated phonon dispersions show that minerals with ionic and covalent bonds are dynamically stable. The vibration analysis of IR modes and Raman modes reveals the strongest covalent bond in (001) plane, and it can produce bigger shear modulus. In addition, the differently cationic masses have a little effect on thermodynamic and dielectric properties for minerals. The investigated results in this paper can promote the analysis of minerals at microscopic level, where the information of vibration can expound the stably combinative direction of electron cloud of minerals. So it can present the macroscopically mechanical property, which would help researchers to research earth mantle.
KW - First-principles calculations
KW - IR spectrum
KW - Raman spectrum
KW - Vibration
UR - http://www.scopus.com/inward/record.url?scp=85062899202&partnerID=8YFLogxK
U2 - 10.1016/j.jpcs.2019.03.011
DO - 10.1016/j.jpcs.2019.03.011
M3 - 文章
AN - SCOPUS:85062899202
SN - 0022-3697
VL - 131
SP - 1
EP - 9
JO - Journal of Physics and Chemistry of Solids
JF - Journal of Physics and Chemistry of Solids
ER -