K0.72Na1.71Ca5.79Si6O19--第一种基于[Si6O19]六聚物的低硅酸盐及其与环硅酸盐相比的稳定性。

IF 1.3 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Volker Kahlenberg, Hannes Krüger, Sonja Garber, Biljana Krüger, Eugen Libowitzky, Stefanie Kröll, Thomas S Hofer, Josef M Gallmetzer, Felix R S Purtscher
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引用次数: 0

摘要

在 K2O-Na2O-CaO-SiO2 四元系中进行了合成实验,结果生成了一种成分为 K0.72Na1.71Ca5.79Si6O19 的未知化合物。从 K2O:Na2O:CaO:SiO2 摩尔比为 1.5:0.5:2:3 的起始混合物中提取出了足够大小和质量的单晶体。将混合物置于封闭的铂管中,以 0.1°C min-1 的速度从 1150°C 缓慢冷却至 700°C,最后在空气中淬火。其结构具有四方对称性,属于空间群 P4122(编号 91),a = 7.3659 (2),c = 32.2318 (18) Å,V = 1748.78 (12) Å3,Z = 4。硅酸盐阴离子由高度皱缩、不分枝的六元低聚物组成,其成分为[Si6O19],点群对称性为 2 (C2)。虽然已有数千种天然和合成的氧化硅具有结构特征,但就我们所知,这种化合物是第一种具有代表性的双链六硅酸盐阴离子。我们利用拉曼光谱完成了结构研究。在 HSEsol 理论水平的密度泛函理论支持下,对光谱数据进行了解释,并将条带归属于某些振动种类。为了确定新型低硅酸盐与化学和结构相似的环硅酸盐 combeite 相比的稳定性,我们使用电负性均衡法计算了各自结构的电负性。结果表明,由于分子单元内氧原子的连接性不同,环硅酸盐的分子电负性明显高于低聚结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
K0.72Na1.71Ca5.79Si6O19 - the first oligosilicate based on [Si6O19]-hexamers and its stability compared to cyclosilicates.

Synthesis experiments were conducted in the quaternary system K2O-Na2O-CaO-SiO2, resulting in the formation of a previously unknown compound with the composition K0.72Na1.71Ca5.79Si6O19. Single crystals of sufficient size and quality were recovered from a starting mixture with a K2O:Na2O:CaO:SiO2 molar ratio of 1.5:0.5:2:3. The mixture was confined in a closed platinum tube and slowly cooled from 1150°C at a rate of 0.1°C min-1 to 700°C before being finally quenched in air. The structure has tetragonal symmetry and belongs to space group P4122 (No. 91), with a = 7.3659 (2), c = 32.2318 (18) Å, V = 1748.78 (12) Å3, and Z = 4. The silicate anion consists of highly puckered, unbranched six-membered oligomers with the composition [Si6O19] and point group symmetry 2 (C2). Although several thousands of natural and synthetic oxosilicates have been structurally characterized, this compound is the first representative of a catena-hexasilicate anion, to the best of our knowledge. Structural investigations were completed using Raman spectroscopy. The spectroscopic data was interpreted and the bands were assigned to certain vibrational species with the support of density functional theory at the HSEsol level of theory. To determine the stability properties of the novel oligosilicate compared to those of the chemically and structurally similar cyclosilicate combeite, we calculated the electronegativity of the respective structures using the electronegativity equalization method. The results showed that the molecular electronegativity of the cyclosilicate was significantly higher than that of the oligostructure due to the different connectivities of the oxygen atoms within the molecular units.

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来源期刊
Acta crystallographica Section B, Structural science, crystal engineering and materials
Acta crystallographica Section B, Structural science, crystal engineering and materials CHEMISTRY, MULTIDISCIPLINARYCRYSTALLOGRAPH-CRYSTALLOGRAPHY
CiteScore
3.60
自引率
5.30%
发文量
0
期刊介绍: Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials publishes scientific articles related to the structural science of compounds and materials in the widest sense. Knowledge of the arrangements of atoms, including their temporal variations and dependencies on temperature and pressure, is often the key to understanding physical and chemical phenomena and is crucial for the design of new materials and supramolecular devices. Acta Crystallographica B is the forum for the publication of such contributions. Scientific developments based on experimental studies as well as those based on theoretical approaches, including crystal-structure prediction, structure-property relations and the use of databases of crystal structures, are published.
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