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铯稀土硅酸盐 Cs RESi O(RE=镝-镥、钇、铟):具有独特的 57 Å 单元轴的不寻常结构类型的母体。

A Cesium Rare-Earth Silicate Cs RESi O (RE=Dy-Lu, Y, In): The Parent of an Unusual Structural Class Featuring a Remarkable 57 Å Unit Cell Axis.

机构信息

Department of Chemistry and Center for Optical Materials Science and Engineering Technologies (COMSET), Clemson University, H.L. Hunter Laboratories, USA.

出版信息

Angew Chem Int Ed Engl. 2018 Feb 19;57(8):2077-2080. doi: 10.1002/anie.201708798. Epub 2018 Feb 1.

Abstract

The structure of Cs RESi O , where RE=Dy-Lu, Y, In, is unusual in that it contains octahedrally coordinated rare-earth ions; their relative orientation dictates the structure, as they rotate about the c-axis supported by the cyclic Si O framework. The repeat unit of the rotation is eight units generating a very long (ca. 57 Å) unit cell axis. This unusual repeat unit is created by the structural flexibility of the hexasilicate ring, which is in turn affected by the size of the rare earth ion as well as the size of alkali ion residing within the silicate layers. Previous work showed for the smaller Sc ion, the rotation of the octahedra is not sufficient to achieve closure at an integral repeat unit and an incommensurate structure results. The products are prepared as large, high quality single crystals using a high-temperature (650 °C) hydrothermal method with CsOH and F mineralizers. The presence of fluoride is essential to the formation of the product.

摘要

CsRESiO(RE=Dy-Lu、Y、In)的结构很不寻常,其中包含八配位的稀土离子;这些离子围绕 c 轴旋转,由环状的 SiO 框架支撑,其相对取向决定了结构。这种旋转的重复单元是八个单元,产生一个非常长(约 57 Å)的晶胞轴。这种不寻常的重复单元是由六硅酸盐环的结构灵活性产生的,而这反过来又受到稀土离子以及位于硅酸盐层内的碱金属离子的大小的影响。之前的研究表明,对于较小的 Sc 离子,八面体的旋转不足以在一个完整的重复单元中实现闭合,从而导致出现非整比结构。该产物是使用高温(650°C)水热法在 CsOH 和 F 矿化剂存在的条件下制备的,得到的是大尺寸、高质量的单晶。氟化物的存在对于产物的形成是必不可少的。

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