论文标题

宏观单相单相唯一唯一的唯一唯一唯一的底物

Macroscopic Single-Phase Monolayer Borophene on Arbitrary Substrates

论文作者

Radatović, Borna, Jadriško, Valentino, Kamal, Sherif, Kralj, Marko, Novko, Dino, Vujičić, Nataša, Petrović, Marin

论文摘要

研究所有2D材料的主要挑战是开发合成方案和工具,这些方案和工具将使它们的大规模生产和有效的操作。唯一的唯一实验仍然限于小区域样品的原位表征。相比之下,我们的工作基于毫米大小的唯一唯一的苯苯甲片,在超高真空中合成了IR(111)表面。除了通过低能量电子衍射(LEED)和原子力显微镜(AFM)证实的高质量宏观合成外,我们还证明了通过电化学划定过程成功地将硼苯从IR从IR转移到SI晶圆。比较拉曼光谱与密度功能理论(DFT)计算结合,证明了硼苯晶体结构已在转移中保存。我们的结果表明,具有较小缺陷和环境稳定性的大规模单层硼苯甲片的成功生长和操纵,从而加快了苯酚实施到更复杂的系统和设备中。

A major challenge in the investigation of all 2D materials is the development of synthesis protocols and tools which would enable their large-scale production and effective manipulation. The same holds for borophene, where experiments are still largely limited to in situ characterizations of small-area samples. In contrast, our work is based on millimeter-sized borophene sheets, synthesized on an Ir(111) surface in ultrahigh vacuum. Besides high-quality macroscopic synthesis, as confirmed by low-energy electron diffraction (LEED) and atomic force microscopy (AFM), we also demonstrate a successful transfer of borophene from Ir to a Si wafer via electrochemical delamination process. Comparative Raman spectroscopy, in combination with the density functional theory (DFT) calculations, proved that borophene's crystal structure has been preserved in the transfer. Our results demonstrate successful growth and manipulation of large-scale, single-layer borophene sheets with minor defects and ambient stability, thus expediting borophene implementation into more complex systems and devices.

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