A Series of Lanthanide(III) Coordination Polymers Based on 3,4-Dichloroisothiazole-5-Carboxylic Acid

IF 1.4 4区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR Journal of Structural Chemistry Pub Date : 2025-03-28 DOI:10.1134/S0022476625030114
E. A. Sanzhenakova, N. P. Zaitsev, K. S. Smirnova, I. P. Pozdnyakov, E. V. Lider
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Abstract

Europium(III), terbium(III), samarium(III), and gadolinium(III) coordination compounds with 3,4-dichloroisothiazole-5-carboxylic acid of general formula [Ln(H2O)2L2(OAc)]n are obtained. The complexes are characterized by a number of physicochemical techniques: elemental analysis, powder and single crystal X-ray diffraction (XRD), and IR spectroscopy. According to the single crystal XRD data, these complexes have the polymeric structure formed by the bridging function of acetate ions. In the case of the deprotonated isothiazole derivative, only oxygen atoms of the carboxyl group participate in coordination (two coordination modes: bidentate cyclic or monodentate). When studying the photoluminescent properties of the obtained europium(III) and terbium(III) complexes, it is found that the quantum yield of terbium(III) compounds exceeds 9 times this parameter for the europium(III) complex. The excited state lifetimes are in the millisecond range.

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基于3,4-二氯异噻唑-5-羧酸的一系列镧系(III)配位聚合物
得到了铕(III)、铽(III)、钐(III)和钆(III)与通式[Ln(H2O)2L2(OAc)]n的3,4-二氯异噻唑-5-羧酸配位化合物。这些配合物通过元素分析、粉末和单晶x射线衍射(XRD)以及红外光谱等物理化学技术进行了表征。根据单晶XRD数据,这些配合物具有醋酸离子桥接作用形成的聚合物结构。在去质子化异噻唑衍生物中,只有羧基上的氧原子参与配位(两种配位模式:双齿环或单齿)。在研究所得到的铕(III)和铽(III)配合物的光致发光性质时,发现铽(III)化合物的量子产率超过了铕(III)配合物该参数的9倍。激发态寿命在毫秒范围内。
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来源期刊
Journal of Structural Chemistry
Journal of Structural Chemistry 化学-无机化学与核化学
CiteScore
1.60
自引率
12.50%
发文量
142
审稿时长
8.3 months
期刊介绍: Journal is an interdisciplinary publication covering all aspects of structural chemistry, including the theory of molecular structure and chemical bond; the use of physical methods to study the electronic and spatial structure of chemical species; structural features of liquids, solutions, surfaces, supramolecular systems, nano- and solid materials; and the crystal structure of solids.
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