首页> 外文期刊>International Journal of Quantum Chemistry >Structure determination of Sr1.25Bi0.75O3 and Sr0.4K0.6BiO3 as a function of temperature from synchrotron X-ray powder diffraction data
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Structure determination of Sr1.25Bi0.75O3 and Sr0.4K0.6BiO3 as a function of temperature from synchrotron X-ray powder diffraction data

机译:根据同步辐射X射线粉末衍射数据确定Sr1.25Bi0.75O3和Sr0.4K0.6BiO3随温度的结构

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The structures of Sr1.25Bi0.75O3 and superconducting Sr0.4K0.6BiO3 have been determined from synchrotron X-ray powder diffraction data between 4 K and the decomposition temperature, at 973 and 573 K, respectively. The symmetry remains monoclinic(a approximate to root 2a(p), b approximate to root 2a(p), c approximate to 2a(p), beta approximate to 90 degrees, P2(1) space group with two Bi sites allowing charge localization) for the undoped compound, and tetragonal (a approximate to root 2a(p), c approximate to 2a(p), I4/mcm space group with a unique Bi site implying a charge delocalization) for the K-doped phase, over the whole temperature range. In both cases the distortion from cubic symmetry decreases as temperature increases. Above 400 K, Sr0.4K0.6BiO3 progressively loses oxygen until it reaches the Sr0.4K0.6BiO2.5 stoichiometry, after which it decomposes. (C) 2000 Academic Press. [References: 14]
机译:Sr1.25Bi0.75O3和超导Sr0.4K0.6BiO3的结构已分别从4 K和分解温度之间的同步加速器X射线粉末衍射数据确定,分别为973和573K。对称性保持单斜(a近似于根2a(p),b近似于根2a(p),c近似于2a(p),β近似于90度,P2(1)/ n具有两个Bi位点的空间群)未掺杂的化合物的电荷定位),对于K掺杂的相,为四边形(近似于根2a(p),c近似于2a(p),I4 / mcm空间组,唯一的Bi位点表示电荷离域),在整个温度范围内。在这两种情况下,立方对称的畸变都随温度升高而减小。高于400 K时,Sr0.4K0.6BiO3逐渐失去氧气,直到达到Sr0.4K0.6BiO2.5化学计量比,然后分解。 (C)2000年学术出版社。 [参考:14]

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