论文标题

QH-POCC:无序材料热膨胀计算中的驯服瓷砖熵

QH-POCC: taming tiling entropy in thermal expansion calculations of disordered materials

论文作者

Esters, Marco, Smolyanyuk, Andriy, Oses, Corey, Hicks, David, Divilov, Simon, Eckert, Hagen, Campilongo, Xiomara, Toher, Cormac, Curtarolo, Stefano

论文摘要

由于其有序的类似物的性能相比,由于其性能增强,因此材料引起了很大的关注,因此特别适合高温应用。将这些材料纳入新设备的可行性取决于多种热物理特性。其中,热膨胀对于设备稳定性至关重要,尤其是在多组分系统中。然而,对于具有替代障碍的材料,阻碍了计算筛查,其计算非常具有挑战性。在这项工作中,我们介绍QH-POCC来利用局部障碍的局部瓷砖扩张。该方法提供了有效的部分分区函数,以计算准谐波近似中替代无序化合物的热机械特性。两个系统AUCU3和CDMG3,后者是低温下长期上层结构的候选者,用于通过比较热膨胀和同性热容量的计算值与实验进行比较,以证明QH-POCC是研究无序系统的热力学特性的一种有希望的方法。

Disordered materials are attracting considerable attention because of their enhanced properties compared to their ordered analogs, making them particularly suitable for high-temperature applications. The feasibility of incorporating these materials into new devices depends on a variety of thermophysical properties. Among them, thermal expansion is critical to device stability, especially in multi-component systems. Its calculation, however, is quite challenging for materials with substitutional disorder, hindering computational screenings. In this work, we introduce QH-POCC to leverage the local tile-expansion of disorder. This method provides an effective partial partition function to calculate thermomechanical properties of substitutionally disordered compounds in the quasi-harmonic approximation. Two systems, AuCu3 and CdMg3, the latter a candidate for long-period superstructures at low temperature, are used to validate the methodology by comparing the calculated values of the coefficient of thermal expansion and isobaric heat capacity with experiment, demonstrating that QH-POCC is a promising approach to study thermomechanical properties of disordered systems.

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