首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Structural study of the N,N′-dimethylpropyleneurea solvated lanthanoid(III) ions in solution and solid state with an analysis of the ionic radii of lanthanoid(III) ions
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Structural study of the N,N′-dimethylpropyleneurea solvated lanthanoid(III) ions in solution and solid state with an analysis of the ionic radii of lanthanoid(III) ions

机译:N,N'-二甲基丙烯脲在溶液和固态中溶剂化镧系元素(III)离子的结构研究,并分析镧系元素(III)离子的离子半径

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The structures of the N,N′-dimethylpropyleneurea (dmpu) solvated lanthanoid(III) ions have been studied in dmpu solution (La-Nd, Sm-Lu) and in solid iodide salts (La-Nd, Sm, Gd-Lu) by extended X-ray absorption fine structure (EXAFS), and single crystal X-ray diffraction (La, Pr, Nd, Gd, Tb, Er, Yb, and Lu); the EXAFS studies were performed on both K and L_(III) absorption edges. Because of the space-demanding properties of dmpu upon coordination, dmpu solvated metal ions often show coordination numbers lower than those found in corresponding hydrates and solvates of oxygen donor solvents without steric requirements beyond the size of the donor atom. All lanthanoid(III) ions are seven-coordinate in solution, except lutetium(III) which is six-coordinated in regular octahedral fashion, whereas in the solid iodide salts the dmpu solvated lanthanoid(III) ions are all six-coordinate in regular octahedral fashion. A comparison of Ln-O bond lengths in a large number of lanthanoid(III) complexes with neutral oxygen donor ligands and different configurations shows that the metal ion-oxygen distance is specific for each coordination number with a narrow bond distance distribution. This also shows that the radius of the coordinated oxygen atom in these compounds can be assumed to be 1.34 ? as proposed for coordinated water, while for ethers such as tetrahydrofuran (thf) it is somewhat larger. Using this atomic radius of oxygen in coordinated water molecules, we have calculated the ionic radii of the lanthanoid(III) ions in four- to nine-coordination and evaluated using the bond lengths reported for homo- and heteroleptic complexes in oxygen donor solvates in solution and solid state. This yields new and revised ionic radii which in some instances are significantly different from the ionic radii normally referenced in the literature, including interpolated values for the elusive promethium(III) ion.
机译:已在dmpu溶液(La-Nd,Sm-Lu)和固态碘盐(La-Nd,Sm,Gd-Lu)中研究了N,N'-二甲基丙烯脲(dmpu)溶剂化镧系元素(III)离子的结构。通过扩展的X射线吸收精细结构(EXAFS)和单晶X射线衍射(La,Pr,Nd,Gd,Tb,Er,Yb和Lu); EXAFS研究是在K和L_(III)吸收边缘上进行的。由于dmpu在配位时对空间的要求,因此dmpu溶剂化的金属离子的配位数通常低于在氧供体溶剂的相应水合物和溶剂化物中所发现的配位数,而对空间的要求不超过供体原子的大小。除以规则八面体形式六配位的((III)外,所有镧系元素(III)离子在溶液中均为七配位,而在固态碘盐中,dmpu溶剂化镧系元素(III)离子在规则八面体中均为六配位。时尚。在具有中性氧供体配体和不同构型的大量镧系元素(III)配合物中,Ln-O键长的比较表明,金属离子-氧的距离对于每个配位数而言都是特定的,且键距分布较窄。这也表明这些化合物中配位氧原子的半径可以假定为1.34≤α。推荐用于配位水,而对于醚,例如四氢呋喃(thf),则稍大一些。利用配位的水分子中氧的原子半径,我们计算出四至九配位的镧系元素(III)离子的离子半径,并使用报告的溶液中供氧溶剂化物中均配和杂配配合物的键长进行评估和固态。这会产生新的和修改的离子半径,在某些情况下,该半径与文献中通常引用的离子半径有很大不同,包括难以捉摸的pro(III)离子的内插值。

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