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From Boron Cluster to Two-Dimensional Boron Sheet on Cu(111) Surface: Growth Mechanism and Hole Formation

机译:从Cu(111)表面上的硼团簇到二维硼片:生长机理和空穴形成

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As attractive analogue of graphene, boron monolayers have been theoretically predicted. However, due to electron deficiency of boron atom, synthesizing boron monolayer is very challenging in experiments. Using first-principles calculations, we explore stability and growth mechanism of various boron sheets on Cu(111) substrate. The monotonic decrease of formation energy of boron cluster BN with increasing cluster size and low diffusion barrier for a single B atom on Cu(111) surface ensure continuous growth of two-dimensional (2D) boron cluster. During growth process, hexagonal holes can easily arise at the edge of a 2D triangular boron cluster and then diffuse entad. Hence, large-scale boron monolayer with mixed hexagonal-triangular geometry can be obtained via either depositing boron atoms directly on Cu(111) surface or soft landing of small planar BN clusters. Our theoretical predictions would stimulate further experiments of synthesizing boron sheets on metal substrates and thus enrich the variety of 2D monolayer materials.
机译:作为石墨烯的有吸引力的类似物,理论上已经预测了硼单层。但是,由于硼原子的电子缺乏,在实验中合成硼单层非常具有挑战性。使用第一性原理计算,我们探索了各种硼片在Cu(111)衬底上的稳定性和生长机理。硼簇B N 的形成能随着簇尺寸的增加和Cu(111)表面上单个B原子的低扩散势垒的单调减少,确保了二维(2D)硼簇的连续生长。在生长过程中,六角孔很容易在2D三角形硼簇的边缘出现,然后扩散。因此,可以通过将硼原子直接沉积在Cu(111)表面上或小的平面BN簇软着陆来获得具有混合六边形-三角形几何形状的大规模硼单层。我们的理论预测将刺激在金属基板上合成硼片的进一步实验,从而丰富2D单层材料的种类。

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