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First-principles calculations of structures, properties and high pressures effects of Fe

Sun Bo Liu Shao-Jun Duan Su-Qing Zhu Wen-Jun

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First-principles calculations of structures, properties and high pressures effects of Fe

Sun Bo, Liu Shao-Jun, Duan Su-Qing, Zhu Wen-Jun
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  • In this paper, we performed first-principles calculations for iron with different crystal structures based on density-function theory, employing the pseudopotentional and plane-wave method. We set the computational precision of energy to 0.01 eV/atom and made total-energy calculations. The calculated results show that: 1) The bcc iron undergoes a pressure-induced phase transform to hcp structure at about 15 GPa, which is in good-agreement with the experimental values; 2) The magnetic moment decreases with increasing pressure, which demonstrates that the high pressures will destroy the magnetism of iron; 3) The ratio of lattice parameters of hcp structure, c/a, will slowly increase with the pressure increasing. When set to a constant about 1.59, the c/a value can give the energy computation precision of 0.01 eV/atom under the pressures in the earth core.
  • [1] Lei Xue-Ling, Zhu Ju-Yong, Ke Qiang, Ouyang Chu-Ying. First-principles study of catalytic mechanism of boron-doped graphene oxide on oxygen evolution reaction of lithium peroxide. Acta Physica Sinica, 2024, 73(9): 098804. doi: 10.7498/aps.73.20240197
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Publishing process
  • Received Date:  27 June 2006
  • Accepted Date:  10 September 2006
  • Published Online:  11 July 2007

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