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岩盐共生结构中 B1-B2 结构相变。

B1-to-B2 structural transitions in rock salt intergrowth structures.

机构信息

Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo, Kyoto 615-8510, Japan.

出版信息

Inorg Chem. 2011 Nov 21;50(22):11787-94. doi: 10.1021/ic201901a. Epub 2011 Oct 21.

Abstract

The rock salt (B1) structure of binary oxides or chalcogenides transforms to the CsCl (B2) structure under high pressure, with critical pressures P(s) depending on the cation to anion size ratio (R(c)/R(a)). We investigated structural changes of A(2)MO(3) (A = Sr, Ca; M = Cu, Pd) comprising alternate 7-fold B1 AO blocks and corner-shared MO(2) square-planar chains under pressure. All of the examined compounds exhibit a structural transition at P(s) = 29-41 GPa involving a change in the A-site geometry to an 8-fold B2 coordination. This observation demonstrates, together with the high pressure study on the structurally related Sr(3)Fe(2)O(5), that the B1-to-B2 transition generally occurs in these intergrowth structures. An empirical relation of P(s) and the R(c)/R(a) ratio for the binary system holds well for the intergrowth structure also, which means that P(s) is predominantly determined by the rock salt blocks. However, a large deviation from the relation is found in LaSrNiO(3.4), where oxygen atoms partially occupy the apical site of the MO(4) square plane. We predict furthermore the occurrence of the same structural transition for Ruddlesden-Popper-type layered perovskite oxides (AO)(AMO(3))(n), under higher pressures. For investigating the effect on the physical properties, an electrical resistivity of Sr(2)CuO(3) is studied.

摘要

在高压下,二元氧化物或硫属化物的岩盐 (B1) 结构转变为 CsCl (B2) 结构,临界压力 P(s) 取决于阳离子与阴离子大小比 (R(c)/R(a))。我们研究了由交替的 7 重 B1 AO 块和顶角共享的 MO(2) 四方平面链组成的 A(2)MO(3) (A = Sr, Ca; M = Cu, Pd) 在压力下的结构变化。所有研究的化合物在 P(s) = 29-41 GPa 处表现出结构转变,涉及 A 位几何形状向 8 重 B2 配位的变化。这一观察结果与结构相关的 Sr(3)Fe(2)O(5) 的高压研究一起表明,B1 到 B2 的转变通常发生在这些互层结构中。对于二元体系,P(s) 与 R(c)/R(a) 比值的经验关系也很好地适用于互层结构,这意味着 P(s) 主要由岩盐块决定。然而,在 LaSrNiO(3.4)中发现了与该关系的较大偏差,其中氧原子部分占据 MO(4) 四方平面的顶点位置。我们进一步预测,在更高压力下,Ruddlesden-Popper 型层状钙钛矿氧化物 (AO)(AMO(3))(n) 也会发生相同的结构转变。为了研究对物理性质的影响,研究了 Sr(2)CuO(3) 的电阻率。

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