Crystal structures of Ca(ClO4)2·4H2O and Ca(ClO4)2·6H2O.

IF 0.9
Erik Hennings, Horst Schmidt, Wolfgang Voigt
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引用次数: 0

Abstract

The title compounds, calcium perchlorate tetra-hydrate and calcium perchlorate hexa-hydrate, were crystallized at low temperatures according to the solid-liquid phase diagram. The structure of the tetra-hydrate consists of one Ca(2+) cation eightfold coordinated in a square-anti-prismatic fashion by four water mol-ecules and four O atoms of four perchlorate tetra-hedra, forming chains parallel to [01-1] by sharing corners of the ClO4 tetra-hedra. The structure of the hexa-hydrate contains two different Ca(2+) cations, each coordinated by six water mol-ecules and two O atoms of two perchlorate tetra-hedra, forming [Ca(H2O)6(ClO4)]2 dimers by sharing two ClO4 tetra-hedra. The dimers are arranged in sheets parallel (001) and alternate with layers of non-coordinating ClO4 tetra-hedra. O-H⋯O hydrogen bonds between the water mol-ecules as donor and ClO4 tetra-hedra and water mol-ecules as acceptor groups lead to the formation of a three-dimensional network in the two structures. Ca(ClO4)2·6H2O was refined as a two-component inversion twin, with an approximate twin component ratio of 1:1 in each of the two structures.

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Ca(ClO4)2-4H2O 和 Ca(ClO4)2-6H2O 的晶体结构。
根据固液相图,标题化合物高氯酸钙四水合物和高氯酸钙六水合物在低温下结晶。四水合物的结构包括一个 Ca(2+) 阳离子与四个水分子和四个高氯酸四面体的四个 O 原子以正方形反棱柱配位,通过共享 ClO4 四面体的角形成平行于 [01-1] 的链。六水合物的结构包含两个不同的 Ca(2+) 阳离子,每个阳离子由六个水分子和两个高氯酸盐四面体的两个 O 原子配位,通过共享两个 ClO4 四面体形成 [Ca(H2O)6(ClO4)]2 二聚体。二聚体呈片状平行 (001) 排列,并与不配位的 ClO4 四面体层交替排列。作为供体的水分子与作为受体的 ClO4 四面体和水分子之间的 O-H⋯O 氢键导致这两种结构形成了三维网络。Ca(ClO4)2-6H2O被细化为双组分反转孪晶,两种结构中的孪晶组分比例大致为1:1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
33.30%
发文量
0
审稿时长
1.3 months
期刊介绍: Acta Crystallographica Section E: Structure Reports Online is the IUCr highly popular open-access structural journal. It provides a simple and easily accessible publication mechanism for the growing number of inorganic, metal-organic and organic crystal structure determinations. The electronic submission, validation, refereeing and publication facilities of the journal ensure very rapid and high-quality publication, whilst key indicators and validation reports provide measures of structural reliability. In 2009, the journal published over 4000 structures. The average publication time is less than one month.
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