Literature DB >> 25672489

An unusual high-spin ground state of Co3+ in octahedral coordination in brownmillerite-type cobalt oxide.

S Ya Istomin1, O A Tyablikov, S M Kazakov, E V Antipov, A I Kurbakov, A A Tsirlin, N Hollmann, Y Y Chin, H-J Lin, C T Chen, A Tanaka, L H Tjeng, Z Hu.   

Abstract

The crystal and magnetic structures of brownmillerite-like Sr(2)Co(1.2)Ga(0.8)O(5) with a stable Co(3+) oxidation state at both octahedral and tetrahedral sites are refined using neutron powder diffraction data collected at 2 K (S.G. Icmm, a = 5.6148(6) Å, b = 15.702(2) Å, c = 5.4543(6) Å; R(wp) = 0.0339, R(p) = 0.0443, χ(2) = 0.775). The very large tetragonal distortion of CoO(6) octahedra (1.9591(4) Å for Co-O(eq) and 2.257(6) Å for Co-O(ax)) could be beneficial for the stabilization of the long-sought intermediate-spin state of Co(3+) in perovskite-type oxides. However, the large magnetic moment of octahedral Co(3+) (3.82(7)μ(B)) indicates the conventional high-spin state of Co(3+) ions, which is further supported by the results of a combined theoretical and experimental soft X-ray absorption spectroscopy study at the Co-L(2,3) edges on Sr(2)Co(1.2)Ga(0.8)O(5). A high-spin ground state of Co(3+) in Sr(2)Co(1.2)Ga(0.8)O(5) resulted in much lower in comparison with a LaCoO(3) linear thermal expansion coefficient of 13.1 ppm K(-1) (298-1073 K) determined from high-temperature X-ray powder diffraction data collected in air.

Entities:  

Year:  2015        PMID: 25672489     DOI: 10.1039/c4dt03670k

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  1 in total

1.  Effect of Fe ion implantation on the thermoelectric properties and electronic structures of CoSb3 thin films.

Authors:  Anha Masarrat; Anuradha Bhogra; Ramcharan Meena; Manju Bala; Ranveer Singh; Vineet Barwal; Chung-Li Dong; Chi-Liang Chen; T Som; Ashish Kumar; A Niazi; K Asokan
Journal:  RSC Adv       Date:  2019-11-06       Impact factor: 4.036

  1 in total

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