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First-principles study of ternary fcc solution phases from special quasirandom structures

机译:来自特殊拟随机结构的三元FCC溶液相的第一性原理研究

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摘要

In the present work, ternary special quasirandom structures (SQSs) for a fcc solid solution phase are generated at different compositions, xA=xB=xC=(1/3) and xA=(1/2), xB=xC=(1/4), whose correlation functions are satisfactorily close to those of a random fcc solution. The generated SQSs are used to calculate the mixing enthalpy of the fcc phase in the Ca-Sr-Yb system. It is observed that first-principles calculations of all the binary and ternary SQSs in the Ca-Sr-Yb system exhibit very small local relaxation. It is concluded that the fcc ternary SQSs can provide valuable information about the mixing behavior of the fcc ternary solid solution phase. The SQSs presented in this work can be widely used to study the behavior of ternary fcc solid solutions.
机译:在目前的工作中,在不同的组成下生成了fcc固溶相的三元特殊拟随机结构(SQSs),xA = xB = xC =(1/3)和xA =(1/2),xB = xC =(1 / 4),其相关函数令人满意地接近于随机fcc解的相关函数。生成的SQS用于计算Ca-Sr-Yb系统中fcc相的混合焓。可以看出,Ca-Sr-Yb系统中所有二元和三元SQS的第一性原理计算都显示出很小的局部弛豫。结论是fcc三元SQS可以提供​​有关fcc三元固溶相混合行为的有价值的信息。这项工作中提出的SQS可以广泛用于研究三元fcc固溶体的行为。

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