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Epitaxial growth and physical properties of 2D materials beyond graphene: from monatomic materials to binary compounds

机译:石墨烯超出2D材料的外延生长和物理性质:从单体材料到二元化合物

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摘要

The discovery of graphene opened a door for manufacturing and investigating two-dimensional (2D) materials. After more than ten years of development, 2D materials have become one of the most important topics in materials research, with dozens of new materials having been synthesized experimentally and even more predicted theoretically. In this review, we provide a comprehensive overview of the fabrication of 2D materials based on epitaxial growth in an ultra-high vacuum (UHV) experimental environment and the investigation of their physical and chemical properties. In particular, we focus on techniques like intercalation, templated molecular adsorption, and direct selenization and tellurization of metal substrates. We discuss progress in fabrication methods of monatomic and binary 2D materials and highlight their interesting and quite unusual physical properties. Finally, we assess future directions of research in this field, where breakthroughs can be expected, and indicate where investments in additional research might be most rewarding scientifically.
机译:石墨烯的发现打开了一门用于制造和研究二维(2D)材料。经过十多年的发展,2D材料已成为材料研究中最重要的主题之一,几十种新材料已经通过实验合成,从理论上均衡。在本综述中,我们在超高真空(UHV)实验环境中基于外延生长以及对其物理和化学性质的调查,全面概述了2D材料的制备。特别是,我们专注于嵌入,模板化分子吸附和直接硒化和金属基材的碲化的技术。我们讨论了单体和二元2D材料的制造方法的进展,并突出了他们的有趣和相当不寻常的物理性质。最后,我们评估了这一领域的未来研究方向,可以预期突破,并表明在额外研究的投资可能最有益于科学地获得。

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