ICSM-UMR 5257 CNRS/CEA/UM2/ENCSM, Centre de Marcoule, 30207 Bagnols/Cèze, France.
Inorg Chem. 2010 Feb 15;49(4):1921-31. doi: 10.1021/ic902343r.
A complete Th(1-x)U(x)(C(2)O(4))(2).2H(2)O solid solution was prepared by mild hydrothermal synthesis from a mixture of hydrochloric solutions containing cations and oxalic acid. The crystal structure has been solved from twinned single crystals for x = 0, 0.5, and 1 with monoclinic symmetry, space group C2/c, leading to unit cell parameters of a approximately 10.5 A, b approximately 8.5 A, and c approximately 9.6 A. The crystal structure consists of a two-dimensional arrangement of actinide centers connected through bis-bidentate oxalate ions forming squares. The actinide metal is coordinated by eight oxygen atoms from four oxalate entities and two water oxygen atoms forming a bicapped square antiprism. The connection between the layers is assumed by hydrogen bonds between the water molecules and the oxygen of oxalate of an adjacent layer. Under these conditions, the unit cell contains two independent oxalate ions. From high-temperature mu-Raman and X-ray diffraction studies, the compounds were found to undergo a transition to an orthorhombic form (space group Ccca). The major differences in the structural arrangement concern the symmetry of uranium, which decreases from C2 to D2, leading to a unique oxalate group. Consequently, the nu(s)(C-O) double band observed in the Raman spectra recorded at room temperature turned into a singlet. This transformation was then used to make the phase transition temperature more precise as a function of the uranium content of the sample.
采用温和水热合成法,从含有阳离子和草酸的盐酸溶液混合物中制备了完整的 Th(1-x)U(x)(C(2)O(4))(2).2H(2)O 固溶体。对于 x = 0、0.5 和 1 的单晶进行了孪晶结构解析,具有单斜对称,空间群 C2/c,导致晶胞参数为 a 约为 10.5 A,b 约为 8.5 A,c 约为 9.6 A。晶体结构由通过双齿草酸离子连接的 actinide 中心的二维排列组成,形成正方形。actinide 金属由来自四个草酸实体和两个水氧原子的八个氧原子配位,形成双帽四方反棱柱体。层与层之间的连接是通过相邻层的水分子和草酸氧之间的氢键来实现的。在这些条件下,晶胞包含两个独立的草酸离子。通过高温微拉曼和 X 射线衍射研究,发现这些化合物经历了向正交形式(空间群 Ccca)的转变。结构排列的主要差异涉及铀的对称性,从 C2 降低到 D2,导致独特的草酸基团。因此,在室温下记录的拉曼光谱中观察到的 nu(s)(C-O)双键转变为单峰。然后,该转变用于更精确地确定作为样品铀含量函数的相变温度。