University of Rennes 1, Sciences Chimiques de Rennes, UMR 6226 CNRS-University of Rennes 1, Bât. 10B, Campus de Beaulieu, F-35042, Rennes, France.
Dalton Trans. 2011 May 7;40(17):4605-13. doi: 10.1039/c0dt01665a. Epub 2011 Mar 26.
We provide a full description of the first single-crystal synthesis of the low-dimensional quantum spin compound (CuCl)LaNb(2)O(7) through the low-temperature topotactic ion exchange route. Very fast diffusion of ion-exchanged CuCl and Cs ions is observed. In addition, thorough structure determination at very low temperature is outlined following use of single-crystal X-ray diffraction and powder neutron diffraction, taking advantage of the better sensitivity of the latter method for describing O and Cl atoms. State-of-the-art calculations (Maximum Entropy Method) are used for visualising the fine structural features of this unusual pseudo-tetragonal superstructure. Our study unambiguously throws light on the long-standing controversy concerning the crystal structure of this compound, and allows for a relevant description of its magnetic properties. Incidentally, it is demonstrated that the low-temperature structural model tentatively proposed very recently by Tsirlin et al. (Phys. Rev. B, 2010, 82, 054107), according to powder synchrotron X-ray diffraction, is correct.
我们通过低温拓扑离子交换途径提供了低维量子自旋化合物(CuCl)LaNb(2)O(7)的首次单晶合成的完整描述。观察到离子交换的 CuCl 和 Cs 离子的非常快速扩散。此外,通过单晶 X 射线衍射和粉末中子衍射进行了彻底的低温结构测定,利用后一种方法对 O 和 Cl 原子进行更好的描述。使用最先进的计算方法(最大熵方法)来可视化这种不寻常的拟四角超结构的精细结构特征。我们的研究明确阐明了关于该化合物晶体结构的长期争议,并允许对其磁性质进行相关描述。顺便说一句,证明了 Tsirlin 等人最近根据粉末同步加速器 X 射线衍射提出的低温结构模型(Phys. Rev. B,2010,82,054107)是正确的。