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Sorting Stable versus Unstable Hypothetical Compounds: The Case of Multi-Functional ABX Half-Heusler Filled Tetrahedral Structures

机译:对稳定的和不稳定的假设化合物进行分类:多功能ABX半霍斯勒填充四面体结构的情况

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摘要

Electronic structure theory has recently been used to propose hypothetical compounds in presumed crystal structures, seeking new useful functional materials. In some cases, such hypothetical materials are metastable, albeit with technologically useful long lifetimes. Yet, in other cases, suggested hypothetical compounds may be significantly higher in energy than their lowest-energy crystal structures or competing phases, making their synthesis and eventual device-stability questionable. By way of example, the focus here is on the family of 1:1:1 compounds ABX called "filled tetrahedral structure" (sometimes called Half-Heusler) in the four groups with octet electron count: Ⅰ-Ⅰ-Ⅵ (e.g., CuAgSe), Ⅰ-Ⅱ-Ⅴ (e.g., AgMgAs), Ⅰ-Ⅲ-Ⅵ (e.g., LiAlSi), and Ⅱ-Ⅱ-Ⅵ (e.g., CaZnSn). First-principles thermodynamics is used to sort the lowestenergy structure and the thermodynamic stability of the 488 unreported hypothetical ABX compounds, many of which were previously proposed to be useful technologically, it is found that as many as 235 of the 488 are unstable with respect to decomposition (hence, are unlikely to be viable technologically), whereas other 235 of the unreported compounds are predicted to be thermodynamically stable (hence, potentially interesting new materials).18 additional materials are too close to determine. The electronic structures of these predicted stable compounds are evaluated, seeking potential new material functionalities.
机译:电子结构理论最近已被用来在假定的晶体结构中提出假设化合物,以寻求新的有用的功能材料。在某些情况下,尽管这些假想材料在技术上有用,但使用寿命长。然而,在其他情况下,建议的假设化合物的能量可能比其最低能量的晶体结构或竞争相要高得多,从而使其合成和最终的装置稳定性令人怀疑。举例来说,这里的重点是四组八位电子计数为Ⅰ-Ⅰ-Ⅵ(例如, CuAgSe),Ⅰ-Ⅱ-Ⅴ(例如AgMgAs),Ⅰ-Ⅲ-Ⅵ(例如LiAlSi)和Ⅱ-Ⅱ-Ⅵ(例如CaZnSn)。第一性原理热力学用于对488个未报告的假设ABX化合物的最低能级结构和热力学稳定性进行分类,其中许多以前被认为在技术上有用,发现488个中的235个相对于不稳定分解(因此,在技术上不太可能可行),而其他235种未报告的化合物据预测是热力学稳定的(因此,可能是有趣的新材料)。18其他材料太接近了,无法确定。对这些预测的稳定化合物的电子结构进行了评估,以寻求潜在的新材料功能。

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  • 来源
    《Advanced Functional Materials》 |2012年第7期|p.1425-1435|共11页
  • 作者单位

    Colorado School of Mines 1500 Illinois Street, Golden, CO 80401, USA;

    National Renewable Energy Laboratory 1617 Cole Blvd., Golden, CO 80401, USA;

    National Renewable Energy Laboratory 1617 Cole Blvd., Golden, CO 80401, USA;

    University of Colorado 914 North Broadway Street Boulder, CO 80309, USA;

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