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首页> 外文期刊>Inorganica Chimica Acta >Lanthanide complexes with 1-hydroxyethane-1,1-diphosphonic acid: solvent organization and coordination geometry in crystalline and amorphous solids
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Lanthanide complexes with 1-hydroxyethane-1,1-diphosphonic acid: solvent organization and coordination geometry in crystalline and amorphous solids

机译:镧系元素与1-羟基乙烷-1,1-二膦酸的络合物:结晶和无定形固体中的溶剂组织和配位几何

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In has been suggested in an earlier report that a 1:2 complex between europium(III) and 1-hydroxyethane-1,1-diphosphonic acid, Eu(H3HEDP)(2)(+), adopts an unexpected coordination geometry in aqueous solution. Thermodynamic and spectroscopic results were interpreted to indicate extensive hydrogen bonding within the complex, and between the complex and the water molecules in its second coordination sphere. In an attempt to confirm some of these features, samples of six amorphous and ten crystalline 1:2 complexes of selected lanthanides with HEDP have been prepared and characterized by single crystal X-ray diffraction,FT IR spectroscopy and thermogravimetric analysis, For the heavy lanthanides (To-Lu plus Y) the crystals are polymeric chains in which the metal ions are seven-coordinate, five water molecules are dispersed in interlamellar spaces, and the fifth hydrogen ion is bound to a free phosphonate oxygen on HEDP. The structure parameters for To(H3HEDP)(H2HEDP). 5H(2)O (representative of the heavy lanthanides) are a = 10.465, b = 11.415, c = 17.252 Angstrom, alpha = 90, beta = 94.22, gamma = 90 degrees and the crystal system is monoclinic. In the corresponding crystalline complexes of the light lanthanides (Eu and Nd), the metal ion is eight-coordinate and the hydration numbers are higher. The fifth hydrogen ion is not closely associated with the phosphonate group in the Eu complex but is bound in the Nd crystal. The crystal indices for [H3O][Eu(H2HEDP)(2)]. 12H(2)O are a = 10.0988, b = 11.4846, c = 11.9303 Angstrom, alpha = 99.637, beta = 91.277, gamma = 95.828 degrees. The corresponding values for Nd(H3HEDP)(H2HEDP). 7H(2)O are a = 9.318, b = 10.272, c = 11.766 Angstrom, alpha = 91.09, beta = 111.24, gamma = 98.50 degrees, Both crystallize in the triclinic crystal system. Thr amorphous analogs for both light and heavy lanthanides are more strongly hydrated (Ln(H3HEDP)(H2HEDP). 18H(2)O). FT-IR spectra confirm that there are no inner sphere water molecules in either the crystalline or amorphous solids, but the water stretching and bending frequencies are proportional to the cation radius in the amorphous species (though not in the crystalline analogs). The crystal position parameters indicate extensive hydrogen bonding between the interstitial water molecules and the bound ligands, and a hydrogen bonding interaction between the bound ligands, Though the polymeric nature of the solids is different from that in solution, the solvent organization features are consistent with the previously postulated structure of the 1:2 complex between Eu(III) and HEDP in aqueous solution. (C) 1998 Elsevier Science S.A. [References: 52]
机译:在较早的一份报告中,有人建议在(III)与1-羟基乙烷-1,1-二膦酸Eu(H3HEDP)(2)(+)之间的1:2络合物在水溶液中采用意想不到的配位几何。热力学和光谱学结果被解释为表明在配合物中以及配合物与第二配位球中的水分子之间存在广泛的氢键。为了确定其中一些特征,已制备了六种镧系元素与HEDP的六种非晶态和十种晶体的1:2配合物样品,并通过单晶X射线衍射,FT IR光谱和热重分析对其进行了表征。对于重镧系元素(To-Lu加Y)晶体是聚合物链,其中金属离子为七配位,五个水分子分散在层间空间中,第五个氢离子与HEDP上的游离膦酸酯氧结合。 To(H3HEDP)(H2HEDP)的结构参数。 5H(2)O(代表重镧系元素)是a = 10.465,b = 11.415,c = 17.252埃,α= 90,β= 94.22,γ= 90度,且晶体系统为单斜晶。在轻质镧系元素(Eu和Nd)的相应晶体络合物中,金属离子为8坐标,水合数更高。第五氢离子与Eu络合物中的膦酸酯基团不紧密缔合,但结合在Nd晶体中。 [H3O] [Eu(H2HEDP)(2)]的晶体指数。 12H(2)O是a = 10.0988,b = 11.4846,c = 11.9303埃,α= 99.637,β= 91.277,γ= 95.828度。 Nd(H3HEDP)(H2HEDP)的相应值。 7H(2)O为a = 9.318,b = 10.272,c = 11.766埃,α= 91.09,β= 111.24,γ= 98.50度,两者均在三斜晶系中结晶。轻和重镧系元素的无定形类似物的水合度更高(Ln(H3HEDP)(H2HEDP)。18H(2)O)。 FT-IR光谱证实,在晶体或无定形固体中都没有内层水分子,但是水的拉伸和弯曲频率与无定形物质中的阳离子半径成正比(尽管在晶体类似物中不是)。晶体位置参数表明间隙水分子与结合的配体之间存在广泛的氢键结合,结合的配体之间存在氢键相互作用。尽管固体的聚合性质与溶液中的不同,但溶剂的组织特征与水溶液中Eu(III)和HEDP之间1:2络合物的结构是先前假定的。 (C)1998 Elsevier Science S.A. [参考:52]

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