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首页> 外文期刊>European journal of inorganic chemistry >X-ray Crystal Structure of a Sodium Salt of [Gd(DOTP)]~(5-):Implications for Its Second-Sphere Relaxivity and the ~(23)Na NMR Hyperfine Shift Effects of [Tm(DOTP)]~(5-)
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X-ray Crystal Structure of a Sodium Salt of [Gd(DOTP)]~(5-):Implications for Its Second-Sphere Relaxivity and the ~(23)Na NMR Hyperfine Shift Effects of [Tm(DOTP)]~(5-)

机译:[Gd(DOTP)]〜(5-)的钠盐的X射线晶体结构:其第二球弛豫性的暗示和[Tm(DOTP)]〜(5)的〜(23)Na NMR超细位移效应-)

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摘要

The X-ray structure of the sodium salt of [Gd(DOTP)]~(5-)shows two differnet chelates,[Gd~(1)(DOTP)]~(5-)and [Gd~(2)(DOTP)]~(5-),bound at either surface of a sheet formed by a cluster of hydrated Na~+ ions.Each [Gd~(1)(DOTP)]~(5-)anion binds directly to four Na~+ ions of this cluster through the free oxygen atoms of the phosphonate groups of the adjacent ligand,while each [Gd~(2)(DOTP)]~(5-)unit is connected to the cluster via hydrogen bonds only.The Cd~(3+)ions in the two moieties do not have any inner-sphere water molecules,and are eight-coordinate.Their coordiantion polyhedra are twisted square antiprisms,with slightly different twist angles.These m'isomers are found in the crystal structure as racemic mixtures of enantiomers.Only one set of NMR resonances is observed in aqueous solution,corresponding to an averaged m'isomer.In this crystal structure,the Na~+ions bind the phosphonate oxygen atoms of the [Gd~(1)(DOTP)]~(5-)anion at positions far removed from the binding mode(s)previously proposed to be occurring in solution between Na~+and [Tm(DOTP)]~(5-),based on the interpretation of solution paramagnetic ~(23)Na NMR shifts.This could arise as a result of the effects of the cluster of hydrated Na~+ ions that are present,which may hinder axial binding modes and distort lateral binding modes.Further,in the crsytal structure,both types of Gd~(3+)centers have four second-sphere water molecules that are located at distances (4.2-4.5 A)signifciantly longer than those prevously proposed from the analysis of the NMRD data of [Gd~(1)(DOTP)]~(5-).This is a result of the coordination of Na~+by these water moilecules,thus preventing their direct interaction with the phosphonate ligand oxygen atoms,resulting in efficient relaxation if their binding has relatively long lifetimes (>50 ps).Rotational immobilization will amplify this contribution,thus making it similar to outer-sphere relaxation.
机译:[Gd(DOTP)]〜(5-)的钠盐的X射线结构显示两种不同的净螯合物,[Gd〜(1)(DOTP)]〜(5-)和[Gd〜(2)(DOTP) )]〜(5-),结合在由一团水合的Na〜+离子形成的薄片的任一表面上。每个[Gd〜(1)(DOTP)]〜(5-)阴离子直接与四个Na〜+结合该簇的离子通过相邻配体的膦酸酯基团的游离氧原子,而每个[Gd〜(2)(DOTP)]〜(5-)单元仅通过氢键与簇连接。这两个部分中的3+)离子没有任何内球水分子,并且具有8个坐标。它们的配位多面体是扭曲的方形反棱镜,扭曲角略有不同。这些m'异构体在外消旋体中被发现为外消旋体对映体的混合物。在水溶液中仅观察到一组NMR共振,与平均m'异构体相对应。在这种晶体结构中,Na〜+离子与[Gd〜(1)(DOTP)的膦酸酯氧原子结合离结合模式较远的位置的]〜(5-)阴离子根据对溶液顺磁性〜(23)Na NMR位移的解释,通常建议在Na〜+和[Tm(DOTP)]〜(5-)之间的溶液中发生。这可能是由于存在的水合Na〜+离子簇,可能会阻碍轴向键合模式并扭曲侧向键合模式。此外,在隐状结构中,两种类型的Gd〜(3+)中心都具有四个位于第二层的水分子(4.2-4.5 A)处的距离比[Gd〜(1)(DOTP)]〜(5-)的NMRD数据分析所提出的距离要长得多。这是Na〜+配位的结果这些水分子可以防止它们与膦酸酯配体氧原子直接相互作用,如果它们的结合具有较长的寿命(> 50 ps),则会导致有效的弛豫。旋转固定会放大这种作用,从而使其类似于外球弛豫。

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