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首页> 外文期刊>International Journal of Quantum Chemistry >Neutron powder diffraction study of A(2)BeF(4) (A = K, Rb, Cs): Structure refinement and analysis of background
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Neutron powder diffraction study of A(2)BeF(4) (A = K, Rb, Cs): Structure refinement and analysis of background

机译:A(2)BeF(4)(A = K,Rb,Cs)的中子粉末衍射研究:结构优化和背景分析

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The crystal structure of potassium, rubidium and caesium fluoroberyllates have been re-examined by neutron powder diffraction at room temperature and at 1.5 K. Previously, their structures, obtained from X-ray data, were described in the Pn2(1)a space group. However, the results obtained from Rietveld refinements, using powder neutron diffraction, at both temperatures, indicated that all structures are orthorhombic with space group Pnma. The known phase transition at high temperature is probably related to the appearance of a hexagonal pseudo-symmetry instead of the elimination of the mirror plane between the above mentioned orthorhombic space groups. A possible phase transition, at very low temperature, was discarded considering the stereochemical criteria concerning the structural stability of A(2)BX(4) compounds. This was confirmed by thermal analysis. On the other hand, a modulated background has been detected in all samples during the refinements. This is compatible with the presence of an amorphous phase, coexisting with the crystalline phase, or with a disordered component within the main crystalline phase. Instead of using a polynomial function, the background was modelled by Fourier filtering improving the fit for all patterns. The radial distribution function (RDF) was obtained from the analysis of the calculated background and compared with the RDF from the average crystal structure. The advantages of neutron with respect to X-ray diffraction were evidenced for this type of compound with β-K2SO4-type structure. © 2005 Elsevier Inc. All rights reserved.
机译:氟铍酸钾、,和铯的晶体结构已在室温和1.5 K下通过中子粉末衍射进行了重新检查。以前,根据X射线数据获得的结构已在Pn2(1)a空间群中进行了描述。然而,在两个温度下使用粉末中子衍射从Rietveld精炼获得的结果表明,所有结构都是正交的,空间群为Pnma。高温下已知的相变可能与六角形伪对称的出现有关,而不是消除上述正交空间群之间的镜面。考虑到有关A(2)BX(4)化合物的结构稳定性的立体化学标准,在非常低的温度下放弃了可能的相变。通过热分析证实了这一点。另一方面,在细化过程中,在所有样本中均检测到调制背景。这与与结晶相共存的非晶相或主结晶相中无序组分的存在相容。不是使用多项式函数,而是通过傅立叶滤波对背景进行建模,从而改善了所有模式的拟合度。径向分布函数(RDF)是通过对计算出的背景进行分析得出的,并与RDF从平均晶体结构中得出的结果进行了比较。对于具有β-K2 SO 4型结构的这类化合物,证明了中子在X射线衍射方面的优势。 &复制; 2005 Elsevier Inc.保留所有权利。

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