Center for Integrated Nanostructure Physics (CINAP), Institute for Basic Science (IBS) , Suwon 16419, Republic of Korea.
ACS Nano. 2017 Dec 26;11(12):11803-11830. doi: 10.1021/acsnano.7b07436. Epub 2017 Dec 13.
Since graphene became available by a scotch tape technique, a vast class of two-dimensional (2D) van der Waals (vdW) layered materials has been researched intensively. What is more intriguing is that the well-known physics and chemistry of three-dimensional (3D) bulk materials are often irrelevant, revealing exotic phenomena in 2D vdW materials. By further constructing heterostructures of these materials in the planar and vertical directions, which can be easily achieved via simple exfoliation techniques, numerous quantum mechanical devices have been demonstrated for fundamental research and technological applications. It is, therefore, necessary to review the special features in 2D vdW materials and to discuss the remaining issues and challenges. Here, we review the vdW materials library, technology relevance, and specialties of vdW materials covering the vdW interaction, strong Coulomb interaction, layer dependence, dielectric screening engineering, work function modulation, phase engineering, heterostructures, stability, growth issues, and the remaining challenges.
自从通过胶带技术获得石墨烯以来,人们已经对大量的二维(2D)范德华(vdW)层状材料进行了深入研究。更有趣的是,众所周知的三维(3D)体材料的物理和化学性质通常是不相关的,揭示了 2D vdW 材料中的奇异现象。通过进一步构建这些材料在平面和垂直方向上的异质结构,可以通过简单的剥离技术轻松实现,许多量子力学器件已经被证明用于基础研究和技术应用。因此,有必要对 2D vdW 材料的特殊性质进行综述,并讨论存在的问题和挑战。在这里,我们综述了 vdW 材料库、技术相关性以及 vdW 材料的特殊性质,包括 vdW 相互作用、强库仑相互作用、层依赖性、介电屏蔽工程、功函数调制、相工程、异质结构、稳定性、生长问题以及存在的挑战。