多金属氧酸盐与镧系金属相互作用形成的preyssler型多氧钨酸盐的合成与性能

IF 1.2 4区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR Journal of Structural Chemistry Pub Date : 2024-12-27 DOI:10.1134/S0022476624120035
Q. Zhu, V. P. Fedin, W. Yao, C. Qin
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引用次数: 0

摘要

镧系金属改性的聚甲醛结合了聚甲醛和镧系金属的优点,在发光、磁性、催化等领域表现出良好的性能。与经典的keggin型POMs相比,更大尺寸的preyssler型POMs表现出丰富的空间结构演化,从而为合成性能优异的多金属氧酸盐提供了潜力。本文以preyssler型pom K12.5Na1.5[NaP5W30O110] (P5W30)为研究对象,采用水热合成法,设计并合成了5种多金属氧酸盐KNa{[Tb4(H2O)32](NaP5W30O110)}·24H2O(1)、KNa{[Eu4(H2O)32](NaP5W30O110)}·19H2O(2)、KNa{[La4(H2O)24](NaP5W30O110)}·22H2O(3)、KNa{[Gd4(H2O)30](NaP5W30O110)}·20H2O(4)、KNa{[Sm4(H2O)24](NaP5W30O110)}·21H2O(5)。综述了pH值、化学计量比和反应温度对合成的影响。描述了5种多金属氧酸盐的晶体结构,分析了镧系金属的配位环境。研究了这些化合物的PXRD、红外光谱、热重和荧光性质。
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Synthesis and Properties of Preyssler-Type Polyoxotungstates Formed by the Interaction Between Polyoxometalate and Lanthanide Metals

POMs modified with lanthanide metals combine the advantages of POMs and lanthanide metals, and show promising properties in the fields of luminescence, magnetism, catalysis, etc. Comparing with the classical Keggin-type POMs, the Preyssler-type POMs with larger size exhibit a rich spatial structure evolution, thereby offering potential for the synthesis of polyoxometalates with excellent properties. In this paper, the Preyssler-type POMs K12.5Na1.5[NaP5W30O110] (P5W30) were selected as the research object, five polyoxometalates KNa{[Tb4(H2O)32](NaP5W30O110)}·24H2O(1), KNa{[Eu4(H2O)32](NaP5W30O110)}· ·19H2O(2), KNa{[La4(H2O)24](NaP5W30O110)}·22H2O(3), KNa{[Gd4(H2O)30](NaP5W30O110)}·20H2O(4), KNa{[Sm4(H2O)24](NaP5W30O110)}·21H2O(5) were designed and synthesized with different lanthanide metals by hydrothermal synthesis method. The effects of pH value, stoichiometric ratio and reaction temperature on the synthesis were summarized. The crystal structures of five polyoxometalates were described, and the coordination environment of lanthanide metals was analyzed. PXRD, infrared spectra, thermogravimetric and fluorescence properties of these compounds were studied.

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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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