School of Physics and Astronomy, University of Manchester, Manchester M13 9PL, UK.
Nature. 2013 Jul 25;499(7459):419-25. doi: 10.1038/nature12385.
Research on graphene and other two-dimensional atomic crystals is intense and is likely to remain one of the leading topics in condensed matter physics and materials science for many years. Looking beyond this field, isolated atomic planes can also be reassembled into designer heterostructures made layer by layer in a precisely chosen sequence. The first, already remarkably complex, such heterostructures (often referred to as 'van der Waals') have recently been fabricated and investigated, revealing unusual properties and new phenomena. Here we review this emerging research area and identify possible future directions. With steady improvement in fabrication techniques and using graphene's springboard, van der Waals heterostructures should develop into a large field of their own.
对石墨烯和其他二维原子晶体的研究非常热烈,并且很可能在未来多年内成为凝聚态物理和材料科学的主导课题之一。展望这一领域之外,孤立的原子层也可以通过在精确选择的序列中层层组装重新构成设计好的异质结构。第一个这样的异质结构(通常被称为“范德华”)已经非常复杂,最近已经被制造和研究,揭示了不寻常的性质和新现象。在这里,我们综述了这一新兴的研究领域,并确定了可能的未来方向。随着制造技术的稳步提高,并利用石墨烯作为跳板,范德华异质结构应该会发展成为一个广阔的领域。