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首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Phosphate tungsten bronze series: crystallographic and structural properties of low-dimensional conductors [Review]
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Phosphate tungsten bronze series: crystallographic and structural properties of low-dimensional conductors [Review]

机译:磷酸盐钨青铜系列:低维导体的晶体学和结构性质[综述]

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Phosphate tungsten bronzes have been shown to be conductors of low dimensionality. A review of the crystallographic and structural properties of this huge series of compounds is given here, corresponding to the present knowledge of the different X-ray studies and electron microscopy investigations. Three main families are described, monophosphate tungsten bronzes, A(x)(PO2)(4) (WO3)(2m), either with pentagonal tunnels (MPTBp) or with hexagonal tunnels (MPTBh), and diphosphate tungsten bronzes, A(x)(P2O4)(2) (WO3)(2m), mainly with hexagonal tunnels (DPTBh). The general aspect of these crystal structures may be described as a building of polyhedra sharing oxygen corners made of regular stacking of WO3-type slabs with a thickness function of m, joined by slices of tetrahedral PO4 phosphate or P2O7 diphosphate groups. The relations of the different slabs with respect to the basic perovskite structure are mentioned. The structural description is focused on the tilt phenomenon of the WO6 octahedra inside a slab of WO3-type. In this respect, a comparison with the different phases of the WO3 crystal structures is established. The various modes of tilting and the different possible connections between two adjacent WO3-type slabs involve a great variety of structures with different symmetries, as well as the existence of numerous twins in MPTBp's. Several phase transitions, with the appearance of diffuse scattering and modulation phenomena, were analysed by X-ray scattering measurements and through the temperature dependence of various physical properties for the MPTBp's. The role of the W displacements within the WO3-type slabs, in two modulated structures (m = 4 and m = 10), already solved, is discussed. Finally, the complexity of the structural aspects of DPTBh's is explained on the basis of the average structures which are the only ones solved. [References: 113]
机译:磷酸盐钨青铜已被证明是低维导体。在此给出了这一系列化合物的晶体学和结构性质的综述,对应于不同X射线研究和电子显微镜研究的当前知识。描述了三个主要族,单磷酸盐钨青铜A(x)(PO2)(4)(WO3)(2m),具有五边形隧道(MPTBp)或六角隧道(MPTBh),以及二磷酸盐钨青铜A(x (P2O4)(2)(WO3)(2m),主要带有六角形隧道(DPTBh)。这些晶体结构的一般方面可描述为共享氧角的多面体建筑,该角由规则堆叠的WO3型平板(厚度函数为m)制成,并由切片的四面体PO4磷酸酯或P2O7二磷酸酯基团连接。提到了不同平板相对于钙钛矿基本结构的关系。结构描述集中在WO3型平板内部的WO6八面体的倾斜现象。在这方面,建立了与WO3晶体结构的不同相的比较。倾斜的各种模式以及两个相邻的WO3型平板之间可能的不同连接涉及具有不同对称性的多种结构,以及MPTBp中存在大量孪生。通过X射线散射测量以及MPTBp的各种物理特性对温度的依赖性,分析了出现弥散散射和调制现象的几个相变。讨论了在已解决的两个调制结构(m = 4和m = 10)中WO3型平板中W位移的作用。最后,在平均结构的基础上解释了DPTBh的结构方面的复杂性,这是唯一可以解决的结构。 [参考:113]

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