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探索混合阳离子铀氧化物CaUNbO₄中的相变和结构复杂性。

Exploring Phase Transition and Structural Complexity in the Mixed Cation Uranium Oxide CaUNbO.

作者信息

Nicholas Maria K, Zhang Zhaoming, Gu Qinfen, Griffith Christopher S, Maynard-Casely Helen E, Mullens Bryce G, Bennett Caleb J, Kennedy Brendan J

机构信息

School of Chemistry, The University of Sydney, Sydney, NSW 2006, Australia.

Australian Nuclear Science and Technology Organisation, New Illawarra Road, Lucas Heights, NSW 2234, Australia.

出版信息

Inorg Chem. 2024 Aug 19;63(33):15433-15442. doi: 10.1021/acs.inorgchem.4c02496. Epub 2024 Aug 7.

Abstract

The structures and high-temperature phase transition of CaUNbO were studied in situ using synchrotron X-ray and neutron powder diffraction. Rietveld refinements provided an accurate description of the crystal structures of both the monoclinic fergusonite-type 2/ structure observed at room temperature and the tetragonal scheelite-type 4/ structure found at high temperatures. Bond valence sum analysis showed Nb to be octahedrally coordinated in the monoclinic fergusonite-type structure, akin to other NbO materials. Rietveld analysis of the variable temperature data allowed for the determination of accurate unit cell parameters and atomic coordinates, as well as revealing a reversible phase transition around ∼750 °C. The Nb-O bond distances display anomalous behavior, with a discontinuity in the longer Nb-O(1') distance coinciding with the phase transition suggestive of a reconstructive phase transition. Mode analysis identified the Γ mode as the primary mode that drives the phase transition; this is linearly coupled to the induced spontaneous strain within the monoclinic fergusonite-type structure. Analysis of the temperature dependence of the Nb() positional parameter, as well as of the ϵ-ϵ and ϵ strain parameters, showed that the phase transition is not strictly second order, with the critical exponent β ≠ 1/2. This study demonstrates the complex structural features of mixed cation metal oxides at elevated temperatures.

摘要

利用同步辐射X射线和中子粉末衍射对CaUNbO的结构和高温相变进行了原位研究。Rietveld精修准确描述了室温下观察到的单斜铁铌矿型2/结构和高温下发现的四方白钨矿型4/结构的晶体结构。键价和分析表明,在单斜铁铌矿型结构中,Nb呈八面体配位,这与其他NbO材料类似。对变温数据的Rietveld分析能够确定精确的晶胞参数和原子坐标,并揭示了在约750℃附近的可逆相变。Nb-O键长表现出异常行为,较长的Nb-O(1')距离的不连续性与相变一致,表明这是一个重构相变。模式分析确定Γ模式是驱动相变的主要模式;它与单斜铁铌矿型结构内的诱导自发应变线性耦合。对Nb()位置参数以及ϵ-ϵ和ϵ应变参数的温度依赖性分析表明,相变并非严格的二级相变,临界指数β≠1/2。本研究展示了混合阳离子金属氧化物在高温下的复杂结构特征。

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