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首页> 外文期刊>Journal of Solid State Chemistry >Novel bismuth oxophosphate halides [Bi_8O_8][BiO _2](PO_4)_2X (X=Cl, Br) based on oxocentered 2D blocks and their relationships to the Aurivillius phases
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Novel bismuth oxophosphate halides [Bi_8O_8][BiO _2](PO_4)_2X (X=Cl, Br) based on oxocentered 2D blocks and their relationships to the Aurivillius phases

机译:基于氧中心2D嵌段的新型含氧磷酸铋铋[Bi_8O_8] [BiO _2](PO_4)_2X(X = Cl,Br)及其与Aurivillius相的关系

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Two new bismuth phosphate halides [Bi_8O_8][BiO _2](PO_4)_2Cl and [Bi_8O _8][BiO_2](PO_4)_2Br, high-temperature phases have been obtained by the solid-state reaction method. Oa-Bi bonds (Oa - additional oxygen atoms not bonded to P) are the shortest and therefore the strongest in the studied structures, which makes it reasonable to consider the Bi-O substructure consisting of OBi_4 tetrahedra and OBi_3 triangles as an independent structural unit interacting with X atoms and PO_4 tetrahedra through relatively weak Bi-X and Bi-O bonds. The topology of this oxocentered Bi-O structural unit is two-dimensional and obviously related to the [O_2Bi_2] ~(2+) layer typical for the Aurivillius type compounds. The formula of the oxocentered block is ([O_8Bi_8][O_2Bi]) ~(7+) with the first part in square brackets designating the moiety formed by the OBi_4 tetrahedra, whereas the second part shows 3-coordinated O atoms and the Bi atoms not participating in the OBi_4 tetrahedra. The interlayer in between the oxocentered 2D blocks is occupied by the phosphate groups and halogen atoms which are organized in alternating stripes. In the case of studied bismuth oxyphosphate halides as well as in other previously reported compounds, 'additional' oxygen atoms can be considered as segregation centers for Bi~(3+) cations. This viewpoint may appear to be useful for design of new schemes and synthetic routes to the bismuth oxysalt compounds with different structural architectures and possible useful applications. The comparison with the similar stairs-like layers in bismuth oxysalt structures is also given.
机译:通过固相反应法获得了两种新型的磷酸铋卤化物[Bi_8O_8] [BiO _2](PO_4)_2Cl和[Bi_8O_8] [BiO_2](PO_4)_2Br。 Oa-Bi键(Oa-未与P结合的其他氧原子)最短,因此也是最强的,这使得将由OBi_4四面体和OBi_3三角形组成的Bi-O子结构视为一个独立的结构单元是合理的通过相对弱的Bi-X和Bi-O键与X原子和PO_4四面体相互作用。这种以氧为中心的Bi-O结构单元的拓扑是二维的,并且显然与Aurivillius型化合物典型的[O_2Bi_2]〜(2+)层相关。氧中心嵌段的分子式为[[O_8Bi_8] [O_2Bi])〜(7+),第一部分放在方括号中,指示由OBi_4四面体形成的部分,而第二部分显示3配位的O原子和Bi原子不参加OBi_4四面体。在以氧为中心的2D嵌段之间的中间层被磷酸盐基团和卤素原子占据,它们以交替的条纹组织。在研究过的磷酸氧铋铋和其他先前报道的化合物中,“额外的”氧原子可被视为Bi〜(3+)阳离子的偏析中心。这种观点似乎对于设计具有不同结构结构和可能有用的应用的含氧铋铋化合物的新方案和合成路线的设计很有用。还给出了与铋草酸盐结构中类似的阶梯状层的比较。

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