论文标题
二维过渡金属二甲基元素合金的设计指南
Design guidelines for two-dimensional transition metal dichalcogenide alloys
论文作者
论文摘要
二维(2D)材料和过渡金属二核苷(TMD)尤其是纳米技术的最前沿。为了量身定制工程应用的属性,需要将用于散装金属的合金策略扩展到这种新颖的材料类别。在这里,我们介绍了TMD家族中替代2D合金在金属和葡萄球核化合物位点上的相位行为的系统分析。相位行为是根据标准仪的标准量量化的,并针对构型能量景观的系统计算筛选进行了基准测试。所得的PETIFOR图可用于确定化学空间之间的广泛趋势,并作为在相空间中建立合理搜索策略的起点,从而允许对可能具有热力学稳定化合物的属性进行有针对性的计算分析。此处介绍的结果还构成了通过一系列合成技术合成二元金属2D TMD合金的有用指南。
Two-dimensional (2D) materials and Transition Metal Dichalcogenides (TMD) in particular are at the forefront of nanotechnology. To tailor properties for engineering applications, alloying strategies used for bulk metals in the last century need to be extended to this novel class of materials. Here we present a systematic analysis of the phase behaviour of substitutional 2D alloys in the TMD family on both the metal and chalcogenide site. The phase behaviour is quantified in terms of a metastability metric and benchmarked against systematic computational screening of configurational energy landscapes. The resulting Pettifor maps can be used to identify broad trends across chemical spaces and as starting point for setting up rational search strategies in phase space, thus allowing for targeted computational analysis of properties on likely thermodynamically stable compounds. The results presented here also constitute a useful guideline for synthesis of binary metal 2D TMDs alloys via a range of synthesis techniques.