The role of deprotonation of the ligand on the structures of metal phosphonates: synthesis, characterization and crystal structures of two new metal diphosphonates with a 1D double chain and a 2D layer structure

J. Mao, Zhike Wang, A. Clearfield
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引用次数: 29

Abstract

Reactions of N-methyl-iminobis(methylenephosphonic acid), CH3N(CH2PO3H2)2, (H4L) with divalent metal nitrates in aqueous solution afforded two new metal diphosphonates with different structures. Zn(H2L)(H2O) (1) features a 1D double chain built from ZnO4 tetrahedra cross-linked by bridging phosphonate groups and ligands. Each zinc cation is tetrahedrally coordinated by three phosphonate oxygen atoms from three ligands and an aqua ligand. These double chains are interconnected into a layer through N–H⋯O and O–H⋯O hydrogen bonds. In Cd(H3L)2·2H2O (2) the Cd(II) ion is octahedrally coordinated by six phosphonate oxygen atoms from four ligands, two of them in a bidentate and two in a unidentate fashion. Each CdO6 octahedron is further linked to four neighboring CdO6 octahedra through four bridging phosphonate groups, resulting in a two-dimensional metal phosphonate (002) layer. These layers are held together by strong hydrogen bonds between uncoordinated phosphonate oxygen atoms. The effect of the extent of deprotonation of phosphonic acids on the type of complex formed is discussed.
配体去质子化对金属膦酸盐结构的影响:两种具有一维双链和二维层结构的新型金属膦酸盐的合成、表征和晶体结构
n -甲基亚胺obis(亚甲基膦酸)、CH3N(CH2PO3H2)2、(H4L)与二价金属硝酸盐在水溶液中反应得到两种结构不同的新型金属二磷酸盐。Zn(H2L)(H2O)(1)是由磷酸基与配体交联的ZnO4四面体组成的一维双链。每个锌阳离子是由来自三个配体和一个水配体的三个磷酸盐氧原子四面体配位的。这些双链通过N-H⋯O和O - h⋯O氢键相互连接成一层。在Cd(H3L)2·2H2O(2)中,Cd(II)离子由来自四个配体的六个磷酸盐氧原子八面配位,其中两个是双齿配位,另外两个是不确定配位。每个CdO6八面体通过四个桥接磷酸基团进一步连接到四个相邻的CdO6八面体,形成二维金属膦酸盐(002)层。这些层是由不配位的磷酸盐氧原子之间的强氢键结合在一起的。讨论了膦酸去质子化程度对形成络合物类型的影响。
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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