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Experimental and theoretical studies on structure, bonding and luminescence properties of Eu(III) and Tb(III) complexes of a new macrocyclic based 8HQ ligand

机译:欧盟(III)和Tb(III)络合物的结构,粘接和发光性能的实验与理论研究,其基于宏循环的8HQ配体

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摘要

8-Hydroxyquinolate complexes of lanthanide have a variety of applications in electroluminescent devices due to their unique luminescence properties. But, the simple 8HQ ligand has a tendency to form polynuclear complexes. However, linking several 8HQ units to a single moiety facilitates the formation of mononuclear complexes due to flexibility, preorganization, pi-stacking and entropy effect. Mononuclear complexes of europium and terbium ions with a new chelator, [1,4,7-tris-{(5-methylene-8-hydroxyquinoline)-1,4,7-triazacyclononane}], embedded with these prerequisites are synthesized and characterized. Each Ln(III) is nine-coordinate and bonded to three sets of O,N-donors of 8HQ units and three water resulting in a pseudo-C-3 symmetric tricapped trigonal prismatic geometry. In silico studies suggest that the metal ion can easily be encapsulated in the central cavity of the ligand without changing its basic structure. Interesting, diverse behavior was observed for photoluminescence spectral studies in solid and solution state. At room temperature, an antenna effect was observed for the complexes only in the powder form. The experimental photoluminescence studies have been explained with the help of TDDFT. The nature of bonding between the lanthanide and the ligand, interpreted by NBO and ETS-NOCV, suggest that the Ln-L bonds are similar to 25% covalent. The Slater Condon parameters, spin-orbital coupling constants, and the nephelauxetic parameters were calculated from LF-DFT.
机译:由于其独特的发光性能,镧系元素的8-羟基喹啉配合物在电致发光器件中具有各种应用。但是,简单的8HQ配体具有形成多核配合物的趋势。然而,将几个8HQ单元连接到单个部分促进了由于柔韧性,整粒,PI堆叠和熵效应而形成单核复合物。用新的螯合剂的单核络合物和铽离子[1,4,7- Tris - {(5-亚甲基-8-羟基喹啉)-1,4,7-三亚辛醛醌}],嵌入这些先决条件是合成的,其特征在于。每个LN(III)是九个坐标并粘合到8组O,N-供体的8HQ单元和三个水,导致伪-C-3对称分子的三角形棱柱形几何形状。在硅研究中,建议金属离子可以容易地封装在配体的中心腔内而不改变其基本结构。在固体和溶液状态下观察到光致发光光谱研究,观察到有趣的,不同的行为。在室温下,仅在粉末形式中观察到络合物的天线效应。在TDDFT的帮助下已经解释了实验光致发光研究。由NBO和ETS-NOCV解释的镧系元素和配体之间的性质表明LN-L键类似于25%的共价值。从LF-DFT计算旋转轨道参数,旋转轨道耦合常数和肾室液参数。

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