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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Conformational study of lanthanide(III) complexes of N-(2-salicylaldiminatobenzyl)-1-aza-18-crown-6 by using X-ray and ab initio methods
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Conformational study of lanthanide(III) complexes of N-(2-salicylaldiminatobenzyl)-1-aza-18-crown-6 by using X-ray and ab initio methods

机译:N-(2-水杨基氨基亚氨基苄基)-1-氮杂-18-皇冠-6镧系元素配合物的X射线和从头算研究

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A structural study of lanthanide complexes with the deprotonated form of the monobracchial lariat ether N-2-salicylaidiminatobenzyl-aza-18-crown-6 (L-4) (Ln = La(III)-Tb(III)) is presented. Attempts to isolate complexes of the heaviest members of the lanthanide series were unsuccessful. The X-ray crystal structures of [Pr(L-4)(H2O)](ClO4)(2)center dot H2O center dot C3H8O and [Sm(L-4)(H2O)](ClO4)(2) center dot C3H8O show the metal ion being bound to the eight donor atoms of the ligand backbone. Coordination number nine is completed by the oxygen atom of an inner-sphere water molecule. Two different conformations of the crown moiety (labelled as A and B) are observed in the solid state structure of the Pr(III) complex, while for the Sm(III) complex only conformation A is observed. The complexes were also characterized by means of theoretical calculations performed in vacuo at the HF level, by using the 3-21G* basis set for the ligand atoms and a 46 + 4f(n) effective core potential for lanthanides. The optimized geometries of the Pr(III) and Sm(III) complexes show an excellent agreement with the experimental structures obtained from X-ray diffraction studies. The calculated relative energies of the A and B conformations for the different [Ln(L-4)(H2O)](2+) complexes (Ln = La, Pr, Sm, Ho or Lu) indicate a progressive stabilization of the A conformation with respect to the B one upon decreasing the ionic radius of the Ln(III) ion. For the [Ln(L-4)(H2O)](2+) systems, most of the calculated bond distances between the metal ion and the coordinated donor atoms decrease along the lanthanide series, as usually observed for Ln(Ill) complexes. However, our ab initio calculations provide geometries in which the Ln-O(5) bond distance [O(5) is an oxygen atom of the crown moiety] increases across the lanthanide series from Sm(III) to Lu(III). (C) 2008 Elsevier Ltd. All rights reserved.
机译:进行了镧系元素配合物的结构研究,该镧系元素配合物具有单质子管的套索状醚N-2-水杨酰亚胺亚胺基至苄基-氮杂-18-冠冕6(L-4)(Ln = La(III)-Tb(III))。尝试分离镧系系列中最重的成员的复合物未成功。 [Pr(L-4)(H2O)](ClO4)(2)中心点H2O中心点C3H8O和[Sm(L-4)(H2O)](ClO4)(2)中心点的X射线晶体结构C 3 H 8 O显示金属离子结合至配体主链的八个供体原子。配位数9由内层水分子的氧原子完成。在Pr(III)配合物的固态结构中观察到冠部分的两个不同构象(标记为A和B),而对于Sm(III)配合物,仅观察到构象A。配合物的特征还在于,在理论上通过在HF浓度下于真空中进行的理论计算来表征,方法是使用3-21G *的配体原子基团和46 + 4f(n)的镧系元素有效核电势。 Pr(III)和Sm(III)配合物的最佳几何形状与从X射线衍射研究获得的实验结构显示出极好的一致性。对于不同的[Ln(L-4)(H2O)](2+)配合物(Ln = La,Pr,Sm,Ho或Lu),A和B构象的计算相对能表明A构象逐渐稳定降低Ln(III)离子的离子半径时,相对于B而言。对于[Ln(L-4)(H2O)](2+)系统,大多数计算出的金属离子与配位供体原子之间的键距沿镧系元素递减,这通常对于Ln(III)配合物观察到。但是,我们的从头计算提供了这样的几何形状,其中Ln-O(5)键距[O(5)是冠状部分的氧原子]在从Sm(III)到Lu(III)的镧系元素上增加。 (C)2008 Elsevier Ltd.保留所有权利。

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