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Structural studies of some body-centered cubic phases of mixed oxides involving Bi2O3: The structures of Bi25FeO40 and Bi38ZnO60
Authors:D.C. Craig  N.C. Stephenson
Affiliation:School of Chemistry, University of New South Wales, Kensington, N.S.W., Australia
Abstract:The structures of the compounds initially reported to be 7·Bi2O3·ZnO and 96·Bi2O3·4Fe2O3, have been determined by X ray methods. Three dimensional, absorption corrected diffractometer data were used and atomic parameters were refined by least-squares procedures. The structures are isomorphous, cubic witha = 10.194(3)and10.179(3)A?, respectively, and space group I23. Each Bi3+ ion is surrounded by five oxygen atoms that form an incomplete octahedral arrangement with BiO distances ranging from 2.07–2.60A?. The6s2inert electron pair completes the octahedron. The Bi3+ ions are vibrating anisotropically. Tetrahedral sites in the structures contain 61 and 46 electrons, respectively. These values are consistent with a statistical distribution of Zn2+ and Bi5+ ions or Fe3+ and Bi5+ ions on these sites. Molar ratios are derived that agree with the observed distributions of electron density and give rise to perfectly stoichiometric systems, devoid of cationic or anionic vacancies. The compositions studied correspond to Bi3+24Bi5+Fe3+O40 and Bi3+36Bi5+2ZnO60 and they are optical enantiomorphs.It is proposed that a reduction in the percentage composition of Bi2O5 leads to metastable phases, in which all atomic positions remain fully occupied but some tetrahedral sites contain Bi3+ ions. The end product of the series is γ-Bi2O3 in which 50% of these sites contain Bi3+ and the remainder Bi5+ ions. We believe that γ-Bi2O3 is Bi3+25Bi5+O40.
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