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镧系离子异质对的超分子识别:迈向自组装双功能探针的一步。

Supramolecular recognition of heteropairs of lanthanide ions: a step toward self-assembled bifunctional probes.

作者信息

André Nicolas, Jensen Thomas B, Scopelliti Rosario, Imbert Daniel, Elhabiri Mourad, Hopfgartner Gérard, Piguet Claude, Bünzli Jean-Claude G

机构信息

Institute of Molecular and Biological Chemistry, Swiss Federal Institute of Technology, BCH 1402, CH-1015 Lausanne, Switzerland.

出版信息

Inorg Chem. 2004 Jan 26;43(2):515-29. doi: 10.1021/ic0351996.

Abstract

Three unsymmetrical ditopic hexadentate ligands coded for the recognition of trivalent lanthanide ions have been synthesized, L(AB), L(AC), and L(BC), where A represents a benzimidazole-pyridine-benzimidazole coordination unit, B a benzimidazole-pyridine-carboxamide one, and C a benzimidazole-pyridine-carboxylic acid moiety. Under stoichiometric 2:3 (Ln:L) conditions, these ligands self-assemble with lanthanide ions to yield triple-stranded bimetallic helicates having a sizable stability in acetonitrile: log beta(23) values for Eu are equal to 23.9 +/- 0.5 (L(AB)), 23.3 +/- 0.7 (deprotonated L(AC)), and 29.8 +/- 0.5 (deprotonated L(BC)). The crystal structure of the EuEu helicate with L(AB) shows 9-coordinate metal ions and an HHH (H stands for head) configuration of the helically wrapped ligand strands. In the presence of equimolar quantities of Ln and Ln' ions, L(AB) displays a remarkable predisposition to form HHH-heterobimetallic edifices, as proved both in the solid state by the crystal structures of the LaEu, LaTb, PrEr, and PrLu helicates and in solution by NMR spectroscopy. In all cases, the benzimidazole-pyridine-carboxamide units of the three ligands are bound to the smaller lanthanide ion, a fact further ascertained by high-resolution luminescence data on LaEu and by (1)H NMR. Analysis of the lanthanide-induced (1)H NMR shifts and of the spin-lattice relaxation times of the LnLu(L(AB))(3) series (Ln = Ce, Pr, Nd, Sm, Eu) demonstrates the isostructural nature of the complexes in solution and that the crystal structure of LaTb is a good model for the solution structure. The selectivity of L(AB) for heteropairs of Ln(III) ions increases with increasing difference in ionic radius, resulting in 70% of the heterobimetallic species for deltar(i) = 0.1 A and up to 90% for LaLu (deltar(i) = 0.18 A), and corresponding to delta(deltaG) in the range 3-10 kJ.mol(-)(1). The origins of this stabilization are discussed in terms of the donor properties of the coordinating units and of the preferential formation of HHH isomers.

摘要

已经合成了三种用于识别三价镧系离子的不对称双齿六齿配体,分别为L(AB)、L(AC)和L(BC),其中A代表苯并咪唑 - 吡啶 - 苯并咪唑配位单元,B代表苯并咪唑 - 吡啶 - 甲酰胺单元,C代表苯并咪唑 - 吡啶 - 羧酸部分。在化学计量比为2:3(Ln:L)的条件下,这些配体与镧系离子自组装,生成在乙腈中具有相当稳定性的三链双金属螺旋配合物:Eu的log β(23)值分别为23.9±0.5(L(AB))、23.3±0.7(去质子化的L(AC))和29.8±0.5(去质子化的L(BC))。EuEu与L(AB)形成的螺旋配合物的晶体结构显示出9配位的金属离子以及螺旋缠绕的配体链的HHH(H代表头部)构型。在等摩尔量的Ln和Ln'离子存在下,L(AB)表现出显著的形成HHH - 异双金属结构的倾向,这在固态下通过LaEu、LaTb、PrEr和PrLu螺旋配合物的晶体结构以及在溶液中通过核磁共振光谱都得到了证明。在所有情况下,这三种配体的苯并咪唑 - 吡啶 - 甲酰胺单元都与较小的镧系离子结合,这一事实通过LaEu的高分辨率发光数据和(1)H NMR进一步得到证实。对镧系元素诱导的(1)H NMR位移以及LnLu(L(AB))(3)系列(Ln = Ce、Pr、Nd、Sm、Eu)的自旋 - 晶格弛豫时间的分析表明,溶液中配合物具有同构性质,并且LaTb的晶体结构是溶液结构的良好模型。L(AB)对Ln(III)离子异对的选择性随着离子半径差异的增加而增加,对于Δr(i)=0.1 Å时,异双金属物种占70%,对于LaLu(Δr(i)=0.18 Å)时高达90%,对应的Δ(ΔG)在3 - 10 kJ·mol⁻¹范围内。本文根据配位单元的给体性质以及HHH异构体的优先形成讨论了这种稳定性的起源。

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