首页> 美国卫生研究院文献>Acta Crystallographica Section B Structural Science Crystal Engineering and Materials >Type II Bi1 − xWxO1.5 + 1.5x: a (3 + 3)-dimensional commensurate modulation that stabilizes the fast-ion conducting delta phase of bismuth oxide
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Type II Bi1 − xWxO1.5 + 1.5x: a (3 + 3)-dimensional commensurate modulation that stabilizes the fast-ion conducting delta phase of bismuth oxide

机译:II型Bi1-xWxO1.5 + 1.5x:(3 + 3)维的相称调制可稳定氧化铋的快速离子传导δ相

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摘要

The Type II phase in the Bi1 − xWxO1.5 + 1.5x system is shown to have a (3 + 3)-dimensional modulated δ-Bi2O3-related structure, in which the modulation vector ∊ ‘locks in’ to a commensurate value of 1/3. The structure was refined in a 3 × 3 × 3 supercell against single-crystal Laue neutron diffraction data. Ab initio calculations were used to test and optimize the local structure of the oxygen sublattice around a single mixed Bi/W site. The underlying crystal chemistry was shown to be essentially the same as for the recently refined (3 + 3)-dimensional modulated structure of Type II Bi1 − xNbxO1.5 + x (Ling et al., 2013), based on a transition from fluorite-type to pyrochlore-type via the appearance of W4O18 ‘tetrahedra of octahedra’ and chains of corner-sharing WO6 octahedra along 〈110〉F directions. The full range of occupancies on this mixed Bi/W site give a hypothetical solid-solution range bounded by Bi23W4O46.5 (x = 0.148) and Bi22W5O48 (x = 0.185), consistent with previous reports and with our own synthetic and analytical results.
机译:Bi1- xWxO1.5 + 1.5x系统中的II型相显示为具有(3 + 3)维调制的δ-Bi2O3相关结构,其中调制矢量∊“锁定”为与之相对应的1/3。相对于单晶劳埃中子衍射数据,在3××3×3的超级单元中对结构进行了细化。从头算是用来测试和优化单个Bi / W混合位点周围氧亚晶格的局部结构。基于萤石的转变,基础晶体化学性质与最近改进的II型Bi1 +-xNbxO1.5 + x型(3 + 3)维调制结构基本相同(Ling等人,2013)。 W4O18“八面体的四面体”的出现和and角共享的WO6八面体沿〈110〉F方向的链状而形成“烧绿石”型。该Bi / W混合位点上的全部占据范围给出了以Bi23W4O46.5(x = 0.148)和Bi22W 5 O 48 (x = 0.185),与以前的报告以及我们自己的综合和分析结果一致。

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