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在溶液中,C 对称手性配体中环大小对发光三螺旋型双金属 Eu(iii)螺旋配合物自组装形成的影响。

The effect of the linker size in C-symmetrical chiral ligands on the self-assembly formation of luminescent triple-stranded di-metallic Eu(iii) helicates in solution.

机构信息

School of Chemistry, Trinity Biomedical Sciences Institute (TBSI), Trinity College Dublin, Dublin 2, Ireland.

出版信息

Dalton Trans. 2018 Sep 11;47(35):12308-12317. doi: 10.1039/c8dt02753f.

Abstract

Chiral lanthanide-based supramolecular structures have gained significant importance in view of their application in imaging, sensing and other functional purposes. We have designed chiral C2-symmetrical ligands (L) based on the use of two 2,6-pyridine-dicarboxylic-amide moieties (pda), that differ from one another by the nature of the diamine spacer groups (from 1,3-phenylenedimethanamine (1(S,S), 2(R,R)) and benzene-1,3-diamine (3(S,S), 4(R,R)) to much bulkier 4,4'-(cyclohexane-1,1-diyl)bis(2,6-dimethylaniline) (5(S,S), 6(R,R))) between these two pda units. The self-assembly between L and Eu(iii) ions were investigated in CH3CN solution at low concentration whereby the changes in the absorbance, fluorescence and Eu(iii)-centred emission spectra allowed us to model the binding equilibria occurring in the solution to the presence of [Eu:L2], [Eu2:L2], [Eu2:L3] assemblies and reveal their high binding constant values. The self-assembly in solution were also studied at higher concentration by following the changes in the 1H NMR spectra of the ligands upon Eu(iii) addition, as well as by using MALDI-MS of the isolated solid state complexes. The chiroptical properties of the ligands were used in order to study the structural changes upon self-assembly between the ligands and Eu(iii) ions using circular dichroism (CD) and circularly polarised luminescence (CPL) spectroscopies. The photophysical properties of [Eu2:L3] complexes were evaluated in solution and showed a decrease of luminescence quantum yield when going from the ligand with smaller (1(S,S)) to bulkier (5(S,S)) linker from ∼5.8% to ∼2.6%. While mass-spectrometry revealed the possible formation of trinucler assemblies such as [Eu3:L3] and [Eu3:L2].

摘要

手性镧系超分子结构因其在成像、传感和其他功能目的中的应用而受到重视。我们设计了基于使用两个 2,6-吡啶二甲酰胺部分(pda)的手性 C2 对称配体(L),这两个 pda 部分彼此不同,原因是二胺间隔基的性质不同(从 1,3-苯二亚甲基二胺(1(S,S), 2(R,R)) 和苯-1,3-二胺(3(S,S), 4(R,R))到更大的 4,4'-(环己烷-1,1-二基)双(2,6-二甲基苯胺)(5(S,S), 6(R,R)))。在 CH3CN 溶液中,在低浓度下研究了 L 和 Eu(iii)离子之间的自组装,吸光度、荧光和 Eu(iii)中心发射光谱的变化使我们能够模拟溶液中存在的[Eu:L2]、[Eu2:L2]、[Eu2:L3]组装体的结合平衡,并揭示它们的高结合常数。还通过研究配体的 1H NMR 光谱在 Eu(iii)加入时的变化以及使用分离的固态配合物的 MALDI-MS,在较高浓度下研究了溶液中的自组装。使用圆二色性(CD)和圆偏振发光(CPL)光谱,在手性配体的帮助下研究了配体与 Eu(iii)离子自组装时结构的变化,以研究配体的手性性质。在溶液中评估了[Eu2:L3]配合物的光物理性质,当从较小(1(S,S))的配体到更大(5(S,S))的连接体时,发光量子产率从约 5.8%下降到约 2.6%。虽然质谱显示可能形成了三核组装体,如[Eu3:L3]和[Eu3:L2]。

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