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Guiding ab initio calculations by alchemical derivatives

机译:用炼金术衍生物指导从头算

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We assess the concept of alchemical transformations for predicting how a further and not-tested change in composition would change materials properties. This might help to guide ab initio calculations through multidimensional property-composition spaces. Equilibrium volumes, bulk moduli, and relative lattice stability of fcc and bcc 4d transition metals Zr, Nb, Mo, Tc, Ru, Rh, Pd, and Ag are calculated using density functional theory. Alchemical derivatives predict qualitative trends in lattice stability while equilibrium volumes and bulk moduli are predicted with less than 9% and 28% deviation, respectively. Predicted changes in equilibrium volume and bulk moduli for binary and ternary mixtures of Rh-Pd-Ag are in qualitative agreement even for predicted bulk modulus changes as large as +100% or -50%. Based on these results, it is suggested that alchemical transformations could be meaningful for enhanced sampling in the context of virtual high-throughput materials screening projects. (C) 2016 AIP Publishing LLC.
机译:我们评估了炼金术转化的概念,以预测成分的进一步未经测试的变化将如何改变材料性能。这可能有助于引导多维属性组成空间的从头计算。使用密度泛函理论计算fcc和bcc 4d过渡金属Zr,Nb,Mo,Tc,Ru,Rh,Pd和Ag的平衡体积,体模和相对晶格稳定性。炼金术衍生物预测晶格稳定性的定性趋势,而平衡体积和本体模量的预测偏差分别小于9%和28%。 Rh-Pd-Ag二元和三元混合物的平衡体积和体积模量的预测变化在定性上也一致,即使预测的体积模量变化高达+ 100%或-50%。根据这些结果,建议在虚拟高通量材料筛选项目的背景下进行炼金术转化对于增强采样意义重大。 (C)2016 AIP出版有限责任公司。

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