镧系元素
正交晶系
结晶学
化学
晶体化学
粘结长度
协调数
晶体结构
单晶
化学计量学
钪
X射线晶体学
衍射
无机化学
物理化学
离子
物理
有机化学
光学
作者
B. Velickov,Volker Kahlenberg,R. Bertram,M. Bernhagen
出处
期刊:Zeitschrift Fur Kristallographie
[Oldenbourg Wissenschaftsverlag]
日期:2007-08-01
卷期号:222 (9): 466-473
被引量:94
标识
DOI:10.1524/zkri.2007.222.9.466
摘要
The crystal chemistry of GdScO 3 and, for the first time, of DyScO 3 , SmScO 3 and NdScO 3 has been investigated using single crystals. The structure of the Czochralski grown crystals was refined from single crystal X-ray diffraction data, their chemical compositions were analysed by inductively coupled plasma optical emission spectrometry (ICP OES). Orthorhombic distorted perovskite structure types with the space group Pnma could be confirmed in all cases. The B-site of the lanthanoid scandates shows with 2.090 to 2.116 Å typical bond lengths for octahedrally coordinated scandium. The distortion of the B-site is rather small. The A-site is occupied by the lanthanoid (Ln) and the Ln—O bond distances vary from 2.233 to 3.722 Å. This indicates its high distortion and makes an assignment of the coordination number difficult. However, an 8-fold coordination for the A-site has to be assumed. The Ln-scandates show a continuous structural evolution with the size of the lanthanoid. A discontinuity within the intermediate members of the Ln-scandates — which had previously been described — was not observed. The ICP OES investigation of these samples results in non-stoichiometric chemical compositions: the chemical analyses show always a depletion in the lanthanoid. Site occupancy refinements based on single crystal diffraction data support the idea of the Ln-depletion on the A-site (inducing O-defects on the O2-position). Several substitution mechanisms are discussed, but the authors favour that vacancies on the A-site coupled with oxygen vacancies cause the Ln-deficiencies. The crystallochemical formula of the investigated Ln-scandates may be written as: (∀ 0.056 Dy 0.944 )ScO 2.916 ,(∀ 0.048 Gd 0.952 )ScO 2.928 , (∀ 0.045 Sm 0.955 )ScO 2.933 and (∀ 0.033 Nd 0.967 )ScO 2.951 .
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