Weirich Thomas E, Portillo Joaquim, Cox Gerhard, Hibst Hartmut, Nicolopoulos Stavros
Gemeinschaftslabor für Elektronenmikroskopie der Rheinisch-Westfälischen Technischen Hochschule (RWTH) Aachen, Ahornstrasse 55, Aachen D-52074, Germany.
Ultramicroscopy. 2006 Feb;106(3):164-75. doi: 10.1016/j.ultramic.2005.07.002. Epub 2005 Aug 2.
The present work deals with the ab initio determination of the heavy metal framework in Cs(x)(Nb, W)(5)O(14) from precession electron diffraction intensities. The target structure was first discovered by Lundberg and Sundberg [Ultramicroscopy 52 (1993) 429-435], who succeeded in deriving a tentative structural model from high-resolution electron microsopy (HREM) images. The metal framework of the compound was solved in this investigation via direct methods from hk0 precession electron diffraction intensities recorded with a Philips EM400 at 100 kV. A subsequent (kinematical) least-squares refinement with electron intensities yielded slightly improved co-ordinates for the 11 heavy atoms in the structure. Chemical analysis of several crystallites by EDX is in agreement with the formula Cs(0.44)Nb(2.54)W(2.46)O(14). Moreover, the structure was independently determined by Rietveld refinement from X-ray powder data obtained from a multi-phasic sample. The compound crystallises in the orthorhombic space group Pbam with refined lattice parameters a=27.145(2), b=21.603(2), and c=3.9463(3)A. Comparison of the framework structure from electron diffraction with the result from Rietveld refinement shows an average agreement for the heavy atoms within 0.09 A.
本工作通过进动电子衍射强度从头算确定Cs(x)(Nb, W)(5)O(14)中的重金属骨架。该目标结构最早由伦德伯格和桑德伯格发现[《超显微术》52 (1993) 429 - 435],他们成功地从高分辨率电子显微镜(HREM)图像推导出一个初步的结构模型。在本研究中,通过直接法从用飞利浦EM400在100 kV下记录的hk0进动电子衍射强度解析了该化合物的金属骨架。随后用电子强度进行(运动学)最小二乘精修,得到了结构中11个重原子略有改进的坐标。用能谱仪对几个微晶进行化学分析,结果与化学式Cs(0.44)Nb(2.54)W(2.46)O(14)相符。此外,通过对多相样品获得的X射线粉末数据进行Rietveld精修独立确定了该结构。该化合物结晶于正交空间群Pbam,精修后的晶格参数为a = 27.145(2),b = 21.603(2),c = 3.9463(3)埃。将电子衍射得到的骨架结构与Rietveld精修结果进行比较,结果表明重原子的平均吻合度在0.09埃以内。