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Comprehensive search for new phases and compounds in binary alloy systems based on platinum-group metals, using a computational first-principles approach

机译:使用计算的第一原理方法,对基于铂族金属的二元合金系统中的新相和化合物进行全面搜索

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摘要

We report a comprehensive study of the binary systems of the platinum-group metals with the transition metals, using high-throughput first-principles calculations. These computations predict stability of new compounds in 28 binary systems where no compounds have been reported in the literature experimentally and a few dozen of as-yet unreported compounds in additional systems. Our calculations also identify stable structures at compound compositions that have been previously reported without detailed structural data and indicate that some experimentally reported compounds may actually be unstable at low temperatures. With these results, we construct enhanced structure maps for the binary alloys of platinum-group metals. These maps are much more complete, systematic, and predictive than those based on empirical results alone.
机译:我们报告了使用高通量第一性原理计算的铂族金属与过渡金属的二元体系的综合研究。这些计算预测了新化合物在28种二元系统中的稳定性,在该文献中,实验性文献中还没有化合物的报道,而在另外的系统中还有几十种尚未报告的化合物。我们的计算还确定了以前没有详细结构数据就已报道的化合物组成的稳定结构,并表明一些实验报告的化合物在低温下实际上可能不稳定。根据这些结果,我们构建了铂族金属二元合金的增强结构图。这些地图比仅基于经验结果的地图更加完整,系统和可预测。

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