4.6 Editorial Material

Reply to Comment on 'Spin- and charge-ordering in oxygen-vacancy-ordered mixed-valence Sr(4)Fe(4)O(11)'

Journal

PHYSICAL REVIEW B
Volume 77, Issue 13, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.77.136402

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Recently, using density-functional theoretical calculations, we have reported [Phys. Rev. B 74, 054422 (2006)] that formal Fe(3+) ions reside at the square-pyramidal site and Fe(4+) ions in the octahedral site in Sr(4)Fe(4)O(11). Based on the interpretation of experimental structural and Mossbauer data from the literature, Adler concludes that our previous first-principles results disagree with experiments on the assignment of oxidation states to Fe in the square-pyramidal and octahedral environments in Sr(4)Fe(4)O(11). From a critical examination of the structure data for Sr(4)Fe(4)O(11) and related oxides with Fe in different oxidation states and theoretically simulated Mossbauer parameters (hyperfine field, isomer shift, and quadrupole splitting), here we show that information on charges residing on the different constituents cannot be directly derived either from experimental structure or Mossbauer data. From additional analyses of the chemical bonding on the basis of charge density, charge transfer, electron localization function, crystal orbital Hamilton population, Born effective charge, and partial density of states, we substantiate our previous assignment of formal Fe(3+) and Fe(4+) to the square-pyramidal and octahedral sites, respectively, in Sr(4)Fe(4)O(11).

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