Department of Chemistry, Ångström Laboratory, Box 523, Uppsala University, 75120, Uppsala, Sweden.
Dalton Trans. 2021 Mar 28;50(12):4244-4254. doi: 10.1039/d1dt00616a. Epub 2021 Mar 10.
A series of luminescent lanthanide(iii) complexes consisting of 1,4,7-triazacyclononane frameworks and three secondary amide-linked carbostyril antennae were synthesised. The metal binding sites were augmented with two pyridylcarboxylate donors yielding octadentate ligands. The antennae carried methyl, methoxymethyl or trifluoromethyl substituents in their 4-positions, allowing for a range of excited state energies and antenna electronic properties. The H NMR spectra of the Eu(iii) complexes were found to be analogous to each other. Similar results were obtained in the solid-state by single-crystal X-ray crystallography, which showed the structures to have nine-coordinate metal ions with heavily distorted tricapped trigonal prismatic geometries. Steady-state and time-resolved luminescence spectroscopy showed that the antennae could sensitize both Tb(iii) and Eu(iii), however, quantum yields were lower than in other octadentate complexes lacking pyridylcarboxylate. Complexes with more electron-poor pyridines were less emissive even when equipped with the same antenna. The oxidation and reduction potentials of the antennae and the pyridinecarboxylates, respectively, were determined by cyclic voltammetry. The obtained values were consistent with electron transfer from the excited antenna to the pyridine providing a previously unexplored quenching pathway that could efficiently compete with energy transfer to the lanthanide. These results show the crucial impact that photophysically innocent ligand binding sites can have on lanthanide luminescence.
一系列包含 1,4,7-三氮杂环壬烷框架和三个次级酰胺连接的碳菁天线的镧系(III)配合物被合成。金属结合位点通过两个吡啶羧酸酯供体得到八配位配体。天线在 4 位带有甲基、甲氧基甲基或三氟甲基取代基,允许激发态能量和天线电子性质的范围。Eu(III)配合物的 H NMR 光谱彼此相似。在固态中通过单晶 X 射线晶体学得到类似的结果,表明结构具有九配位金属离子,具有严重扭曲的三角双锥几何形状。稳态和时间分辨荧光光谱表明,天线可以敏化 Tb(III)和 Eu(III),然而,量子产率低于其他缺乏吡啶羧酸酯的八配位配合物。当配备相同的天线时,具有电子密度较低的吡啶的配合物的发光性甚至更低。通过循环伏安法分别确定了天线和吡啶羧酸酯的氧化还原电位。获得的值与从激发态天线到吡啶的电子转移一致,提供了以前未探索的猝灭途径,可以有效地与向镧系元素的能量转移竞争。这些结果表明,光物理上无害的配体结合位点对镧系元素发光具有至关重要的影响。