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Theoretical predictions of composition-dependent structure and properties of alumina-rich spinel

机译:富铝尖晶石的成分依赖性结构和性能的理论预测

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摘要

Alumina-rich spinel (MgO center dot nAl(2)O(3), n >= 1) was described as a solid solution of MgAl2O4 and Al8/3O4 (gamma-Al2O3) with formula of Mg1-xAl2(1+x/3)O4 (0 <= x <= 1). Five redefined supercell models of MgO center dot nAl(2)O(3) were constructed to investigate the composition-dependence of structural, electronic, optical and mechanical properties. The first-principles calculations were developed with high accuracy to evaluate the lattice constant, electronic structure, dielectric function and elastic constants. The detailed structural information was presented by analyzing the variations in lattice constant, interstitial volume and anion parameter with the content of gamma-Al2O3. The composition-dependent bulk modulus, shear modulus and electronic structure of alumina-rich spinel were well discussed. As increased the content of Al, the mechanical properties showed an increasing trend, while the optical absorption in the UV region presented a blue-shift of similar to 1.2 eV. These theoretical results provided a basis for understanding the crystal structure and intrinsic properties of alumina-rich spinel. (C) 2015 Elsevier Ltd. All rights reserved.
机译:富铝尖晶石(MgO中心点nAl(2)O(3),n> = 1)被描述为MgAl2O4和Al8 / 3O4(γ-Al2O3)的固溶体,分子式为Mg1-xAl2(1 + x / 3)O4(0 <= x <= 1)。构建了五个重新定义的MgO中心点nAl(2)O(3)的超级电池模型,以研究结构,电子,光学和机械性能的成分依赖性。以高精度开发了第一性原理计算,以评估晶格常数,电子结构,介电函数和弹性常数。通过分析晶格常数,间隙体积和阴离子参数随γ-Al2O3含量的变化,给出了详细的结构信息。讨论了富铝尖晶石的成分依赖性体积模量,剪切模量和电子结构。随着Al含量的增加,机械性能显示出增加的趋势,而UV区域的光吸收呈现出类似于1.2 eV的蓝移。这些理论结果为理解富含氧化铝的尖晶石的晶体结构和固有性质提供了基础。 (C)2015 Elsevier Ltd.保留所有权利。

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