When Density Functional Approximations Meet Iron Oxides

Meng, Yu;Liu, Xing-Wu;Huo, Chun-Fang;Guo, Wen-Ping;Wen, Xiao-Dong;et.al.
(2016) Journal of Chemical Theory and Computation — Vol. 12, n° 10, p. 5132-5144 (2016)

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Authors
  • Meng, YuState Key Laboratory of Coal Conversion, Chinese Academy of Sciences, Taiyan, China
    Author
  • Liu, Xing-WuState Key Laboratory of Coal Conversion, Chinese Academy of Sciences, Taiyan, China
    Author
  • Huo, Chun-FangNational Energy Center for Coal to Clean Fuels, Synfules China Co, Beijing, China
    Author
  • Guo, Wen-PingNational Energy Center for Coal to Clean Fuels, Synfules China Co, Beijing, China
    Author
  • Gonze, XavierUCLouvain
    Author
  • Wen, Xiao-DongState Key Laboratory of Coal Conversion, Chinese Academy of Sciences, Taiyan, China
    Author
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Abstract
Three density functional approximations (DFAs), PBE, PBE+U, and Heyd−Scuseria−Ernzerhof screened hybrid functional (HSE), were employed to investigate the geometric, electronic, magnetic, and thermodynamic properties of four iron oxides, namely, α-FeOOH, α-Fe2O3, Fe3O4, and FeO. Comparing our calculated results with available experimental data, we found that HSE (a = 0.15) (containing 15% “screened” Hartree−Fock exchange) can provide reliable values of lattice constants, Fe magnetic moments, band gaps, and formation energies of all four iron oxides, while standard HSE (a = 0.25) seriously overestimates the band gaps and formation energies. For PBE+U, a suitable U value can give quite good results for the electronic properties of each iron oxide, but it is challenging to accurately get other properties of the four iron oxides using the same U value. Subsequently, we calculated the Gibbs free energies of transformation reactions among iron oxides using the HSE (a = 0.15) functional and plotted the equilibrium phase diagrams of the iron oxide system under various conditions, which provide reliable theoretical insight into the phase transformations of iron oxides.
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Citations

Meng, Y., Liu, X.-W., Huo, C.-F., Guo, W.-P., Cao, D.-B., Peng, Q., Dearden, A., Gonze, X., Yang, Y., Wang, J., Jiao, H., Li, Y., & Wen, X.-D. (2016). When Density Functional Approximations Meet Iron Oxides. Journal of Chemical Theory and Computation, 12(10), 5132-5144. https://doi.org/10.1021/acs.jctc.6b00640 (Original work published 2016)