首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Lattice Parameters and Stability of the Spinel Compounds in Relation to the Ionic Radii and Electronegativities of Constituting Chemical Elements
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Lattice Parameters and Stability of the Spinel Compounds in Relation to the Ionic Radii and Electronegativities of Constituting Chemical Elements

机译:尖晶石化合物的晶格参数和稳定性与构成化学元素的离子半径和电负性的关系

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摘要

A thorough consideration of the relation between the lattice parameters of 185 binary and ternary spinel compounds, on one side, and ionic radii and electronegativities of the constituting ions, on the other side, allowed for establishing a simple empirical model and finding its linear equation, which links together the abovementioned quantities. The derived equation gives good agreement between the experimental and modeled values of the lattice parameters in the considered group of spinels, with an average relative error of about 1% only. The proposed model was improved further by separate consideration of several groups of spinels, depending on the nature of the anion (oxygen, sulfur, selenium/tellurium, nitrogen). The developed approach can be efficiently used for prediction of lattice constants for new isostructural materials. In particular, the lattice constants of new hypothetic spinels ZnRE_2O_4, CdRE_2S4, CdRE_2Se_4 (RE = rare earth elements) are predicted in the present Article. In addition, the upper and lower limits for the variation of the ionic radii, electronegativities, and their certain combinations were established, which can be considered as stability criteria for the spinel compounds. The findings of the present Article offer a systematic overview of the structural properties of spinels and can serve as helpful guides for synthesis of new spinel compounds.
机译:一方面仔细考虑了185种二元和三元尖晶石化合物的晶格参数与另一方面的构成离子的离子半径和电负性之间的关系,从而建立了简单的经验模型并找到了线性方程,将上述数量链接在一起。所推导的方程式在所考虑的尖晶石组的晶格参数的实验值与模型值之间具有良好的一致性,平均相对误差仅为1%。通过根据阴离子的性质(氧气,硫,硒/碲,氮)分别考虑几组尖晶石,进一步改进了提出的模型。所开发的方法可以有效地用于预测新的同构材料的晶格常数。特别地,在本文中预测了新的假设尖晶石ZnRE_2O_4,CdRE_2S4,CdRE_2Se_4(RE =稀土元素)的晶格常数。此外,建立了离子半径,电负性及其某些组合变化的上限和下限,可以将其视为尖晶石化合物的稳定性标准。本文的发现为尖晶石的结构性质提供了系统的概述,并可作为合成新的尖晶石化合物的有用指南。

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