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探索多核镧系配合物中可调节的分子内金属间相互作用。

In search for tuneable intramolecular intermetallic interactions in polynuclear lanthanide complexes.

作者信息

Dalla Favera Natalia, Guénée Laure, Bernardinelli Gérald, Piguet Claude

机构信息

Department of Inorganic, Analytical and Applied Chemistry, University of Geneva, 30 quai E. Ansermet, CH-1211, Geneva 4, Switzerland.

出版信息

Dalton Trans. 2009 Oct 7(37):7625-38. doi: 10.1039/b905131g. Epub 2009 Jul 27.

DOI:10.1039/b905131g
PMID:19759934
Abstract

Reaction of unsymmetrical tridentate 2-benzimidazolyl-6-carboxamidopyridine binding units in the ligands (b) and with neutral Ln(NO(3))(3) (Ln is a trivalent lanthanide) gives mononuclear [Ln((b))(NO(3))(3)(solvent)] and binuclear [Ln(2)(L5)(NO(3))(6)(solvent)(2)] complexes. The crystal structures of (b) and [Eu((b))(NO(3))(3)(CH(3)CN)] unravel the conformational change of the tridentate binding units required for its coordination to the metal, a process responsible for the change in electronic absorption spectra and in (1)H NMR spectra recorded in acetonitrile solution. In the solid state, the bis-tridentate ligand shows variable helical conformations of its central diphenylmethane spacer in its uncoordinated form (amphiverse helix) and in its complexed form in [Eu(2)(L5)(NO(3))(6)(H(2)O)(2)] (regular helix), which puts the two metals at a contact distance of 8.564(1) A. In solution, fast rearrangements yield an average planar extended conformation of the spacer, which increases the intramolecular intermetallic contact distance by 30% in [Ln(2)(L5)(NO(3))(6)(H(2)O)(2)]. Surprisingly, the thermodynamic analysis of the complexation processes in solution points to unusual, and to some extent non-predicted charge effects because the intramolecular intermetallic repulsive interaction measured in the neutral complex [Ln(2)(L5)(NO(3))(6)] (Ln...Ln approximately 12 A) is comparable with that found in the highly charged triple-stranded helicate Ln(2)(L5)(3) (Ln...Ln approximately 9 A). The origin of this effect and its consequences on programming stable polynuclear complexes is discussed.

摘要

配体(b)中不对称三齿2-苯并咪唑基-6-甲酰胺基吡啶结合单元与中性Ln(NO₃)₃(Ln为三价镧系元素)反应生成单核[Ln((b))(NO₃)₃(溶剂)]和双核[Ln₂(L5)(NO₃)₆(溶剂)₂]配合物。(b)和[Eu((b))(NO₃)₃(CH₃CN)]的晶体结构揭示了三齿结合单元配位至金属所需的构象变化,该过程导致了在乙腈溶液中记录的电子吸收光谱和¹H NMR光谱的变化。在固态下,双三齿配体在其未配位形式(双螺旋)和[Eu₂(L5)(NO₃)₆(H₂O)₂]中的配位形式(规则螺旋)中,其中心二苯甲烷间隔基呈现可变的螺旋构象,使两种金属的接触距离为8.564(1) Å。在溶液中,快速重排产生间隔基的平均平面伸展构象,这使得[Ln₂(L5)(NO₃)₆(H₂O)₂]中的分子内金属间接触距离增加了30%。令人惊讶的是,溶液中络合过程的热力学分析表明存在不寻常的、在某种程度上不可预测的电荷效应,因为在中性配合物[Ln₂(L5)(NO₃)₆](Ln...Ln约为12 Å)中测得的分子内金属间排斥相互作用与在高电荷三链螺旋体[Ln₂(L5)₃]⁶⁺(Ln...Ln约为9 Å)中发现的相当。讨论了这种效应的起源及其对稳定多核配合物编程的影响。

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