Paria Sena Robert, Babaryk Artem A, Khainakov Sergiy, Garcia-Granda Santiago, Slobodyanik Nikolay S, Van Tendeloo Gustaaf, Abakumov Artem M, Hadermann Joke
Electron Microscopy for Materials Research (EMAT), University of Antwerp, Groenenborgerlaan 171, B-2020, Antwerp, Belgium.
Faculty of Chemistry, Taras Shevchenko National University of Kyiv, Volodymyrska 64/13, 01601 Kyiv, Ukraine and Department of Physical and Inorganic Chemistry, Faculty of Chemistry, University of Oviedo, C/Julian Claveria 8, 33006 Oviedo, Spain.
Dalton Trans. 2016 Jan 21;45(3):973-9. doi: 10.1039/c5dt03479e.
The crystal structure of the K6.4Nb28.2Ta8.1O94 pseudo-tetragonal tungsten bronze-type oxide was determined using a combination of X-ray powder diffraction, neutron diffraction and transmission electron microscopy techniques, including electron diffraction, high angle annular dark field scanning transmission electron microscopy (HAADF-STEM), annular bright field STEM (ABF-STEM) and energy-dispersive X-ray compositional mapping (STEM-EDX). The compound crystallizes in the space group Pbam with unit cell parameters a = 37.468(9) Å, b = 12.493(3) Å, c = 3.95333(15) Å. The structure consists of corner sharing (Nb,Ta)O6 octahedra forming trigonal, tetragonal and pentagonal tunnels. All tetragonal tunnels are occupied by K(+) ions, while 1/3 of the pentagonal tunnels are preferentially occupied by Nb(5+)/Ta(5+) and 2/3 are occupied by K(+) in a regular pattern. A fractional substitution of K(+) in the pentagonal tunnels by Nb(5+)/Ta(5+) is suggested by the analysis of the HAADF-STEM images. In contrast to similar structures, such as K2Nb8O21, also parts of the trigonal tunnels are fractionally occupied by K(+) cations.
采用X射线粉末衍射、中子衍射和透射电子显微镜技术(包括电子衍射、高角度环形暗场扫描透射电子显微镜(HAADF-STEM)、环形明场STEM(ABF-STEM)和能量色散X射线成分映射(STEM-EDX))相结合的方法,确定了K6.4Nb28.2Ta8.1O94假四方钨青铜型氧化物的晶体结构。该化合物结晶于空间群Pbam中,晶胞参数为a = 37.468(9) Å,b = 12.493(3) Å,c = 3.95333(15) Å。其结构由共角的(Nb,Ta)O6八面体构成,形成三角形、四边形和五边形隧道。所有四边形隧道都被K(+)离子占据,而五边形隧道的1/3优先被Nb(5+)/Ta(5+)占据,2/3按规则模式被K(+)占据。通过对HAADF-STEM图像的分析表明,五边形隧道中的K(+)被Nb(5+)/Ta(5+)部分取代。与类似结构(如K2Nb8O21)不同的是,部分三角形隧道也被K(+)阳离子部分占据。