首页> 外文期刊>International Journal of Quantum Chemistry >Bi12Sr22Fe11O56: A new form of 2201/0201 'terraces' like structures, term m=6, n=11 of the [BiO2](m)[Sr2FeO4](n) family
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Bi12Sr22Fe11O56: A new form of 2201/0201 'terraces' like structures, term m=6, n=11 of the [BiO2](m)[Sr2FeO4](n) family

机译:Bi12Sr22Fe11O56:一种新形式的2201/0201“梯田”结构,[BiO2](m)[Sr2FeO4](n)族的m = 6,n = 11

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摘要

A new oxide, namely Bi12Sr22Fe11O56, has been isolated in the Bi-Sr-Fe-O system. The transmission electronic microscopy studies carried out have permitted to characterise it as a double collapsed member derived from the regular intergrowth 2201/0201 type structure Bi2Sr4Fe2O10 (J. Solid State Chem. 118 (1995) 227). It crystallises in the space group I2/a with the following parameters: a = 38.82(1)angstrom, b = 5.731(2), c = 38.35(1)angstrom and beta = 121.31(2)degrees. Close relationships with the collapsed structure Bi13Ba2Sr25Fe13O66 (m = 7,n = 13) are shown. This new ferrite can be described as the (m = 6, n = 11) member of the [Bi2O2](m)[Sr2FeO4](n) family. The stairs are then 6 bismuth atoms wide and the K2NiF4 layers are 11 FeO6 octahedra thick. Moreover, the high-resolution electron microscopy images show the presence of local defects leading to the (m = 7, n = 11) member. Another description of this structure is also considered: it can be understood as slices of the parent structure, Bi2Sr4Fe2O10, separated by shearing zones. If the last ones seem to be the same in all the members, the thickness of the first ones can vary and so leading to different members of the new [Bi2Sr4Fe2O10](w) [Bi4Sr6Fe3O16] family. (c) 2005 Elsevier Inc. All rights reserved.
机译:在Bi-Sr-Fe-O系统中已分离出一种新的氧化物Bi12Sr22Fe11O56。进行的透射电子显微镜研究已经将其表征为源自规则共生的2201/0201型结构Bi 2 Sr 4 Fe 2 O 10的双折叠成员(J.Solid State Chem.118(1995)227)。它在具有以下参数的I2 / a空间群中结晶:a = 38.82(1)埃,b = 5.731(2),c = 38.35(1)埃,β= 121.31(2)度。显示了与塌陷结构Bi13Ba2Sr25Fe13O66(m = 7,n = 13)的紧密关系。这种新的铁氧体可以描述为[Bi2O2](m)[Sr2FeO4](n)族的(m = 6,n = 11)。楼梯的铋原子宽度为6,K2NiF4层的厚度为11 FeO6八面体。此外,高分辨率电子显微镜图像显示了局部缺陷的存在,从而导致了(m = 7,n = 11)成员。还考虑了对该结构的另一种描述:它可以理解为母体结构Bi2Sr4Fe2O10的切片,由剪切区隔开。如果最后一个成员的所有成员似乎都相同,则第一个成员的厚度可能会变化,因此会导致新的[Bi2Sr4Fe2O10](w)[Bi4Sr6Fe3O16]系列成员不同。 (c)2005 Elsevier Inc.保留所有权利。

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