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Borophene Synthesis on Au(111)

机译:Au(111)的硼烯综合

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Borophene (the first two-dimensional (2D) allotrope of boron) is emerging as a groundbreaking system for boron-based chemistry and, more broadly, the field of low-dimensional materials. Exploration of the phase space for growth is critical because borophene is a synthetic 2D material that does not have a bulk layered counterpart and thus cannot be isolated via exfoliation methods. Herein, we report synthesis of borophene on Au(111) substrates. Unlike previously studied growth on Ag substrates, boron diffuses into Au at elevated temperatures and segregates to the surface to form borophene islands as the substrate cools. These observations are supported by ab initio modeling of interstitial boron diffusion into the Au lattice. Borophene synthesis also modifies the surface reconstruction of the Au(111) substrate, resulting in a trigonal network that templates growth at low coverage. This initial growth is composed of discrete borophene nanoclusters, whose shape and size are consistent with theoretical predictions. As the concentration of boron increases, nanotemplating breaks down and larger borophene islands are observed. Spectroscopic measurements reveal that borophene grown on Au(111) possesses a metallic electronic structure, suggesting potential applications in 2D plasmonics, superconductivity, interconnects, electrodes, and transparent conductors.
机译:硼烯(硼的第一个二维(2D)型异数)是基于硼基化学的开创性系统,更广泛地,低维材料领域。对生长的相位空间的探索是至关重要的,因为硼烯是一种合成的2D材料,其不具有块状分层对应物,因此不能通过剥离方法隔离。在此,我们在Au(111)衬底上报告了硼丙烯烯的合成。与先前研究的Ag底物上的生长不同,硼在升高的温度下扩散到Au中,并在表面上偏离表面以形成硼酮岛。通过间质硼扩散的AB Initio对Au格子的初始硼模型支持这些观察结果。硼烯丁烯合成还改变了Au(111)基板的表面重建,导致三角网络在低覆盖范围内的增长。这种初始生长由离散的硼丙肾上腺纳米能器组成,其形状和尺寸与理论预测一致。随着硼浓度的增加,纳米预期突破,观察到较大的硼蛋烯岛。光谱测量表明,在AU(111)上生长的硼烯具有金属电子结构,暗示在2D等离子体,超导,互连,电极和透明导体中的潜在应用。

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