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Stability limits of elemental 2D metals in graphene pores

机译:稳定元素2 d金属的极限石墨烯毛孔

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摘要

Two-dimensional (2D) materials can be used as stabilizing templates for exotic nanostructures, including pore-stabilized, free-standing patches of elemental metal monolayers. Although these patches represent metal clusters under extreme conditions and are thus bound for investigations, they are poorly understood as their energetic stability trends and the most promising elements remain unknown. Here, using density-functional theory simulations and the liquid drop model to explore the properties of 45 elemental metal candidates, we identify metals that enable the largest and most stable patches. Simulations show that pores can stabilize patches up to similar to 8 nm(2) areas and that the most prominent candidate in a graphene template is Cu. The results, which are generalizable to templates also beyond graphene, provide encouragement for further, even more resolute experimental pursuit of 2D metals.
机译:二维(2 d)可以作为材料稳定模板的纳米结构,包括pore-stabilized、独立的补丁元素的金属层。补丁代表金属集群在极端条件,因此前往调查,他们知之甚少,精力充沛稳定的趋势和最有前途的元素仍然未知。理论模拟和液滴模型探索45金属元素的属性候选人,我们确定金属,使最大、最稳定的补丁。毛孔可以稳定斑块相似8海里(2),最突出的领域候选人在石墨烯模板是铜。结果可归纳的模板也超出了石墨烯,提供鼓励此外,实验追求更加坚决二维的金属。

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