Division of Materials Science and Engineering, Hanyang University, Seoul 133-791, Korea.
Nanoscale. 2011 Sep 1;3(9):3522-33. doi: 10.1039/c1nr10370a. Epub 2011 Jul 25.
This article presents a review of current research activities on the hybrid heterostructures of inorganic nanostructures grown directly on graphene layers, which can be categorized primarily as zero-dimensional nanoparticles; one-dimensional nanorods, nanowires, and nanotubes; and two-dimensional nanowalls. For the hybrid structures, the nanostructures exhibit excellent material characteristics including high carrier mobility and radiative recombination rate as well as long-term stability while graphene films show good optical transparency, mechanical flexibility, and electrical conductivity. Accordingly, the versatile and fascinating properties of the nanostructures grown on graphene layers make it possible to fabricate high-performance optoelectronic and electronic devices even in transferable, flexible, or stretchable forms. Here, we review preparation methods and possible device applications of the hybrid structures consisting of various types of inorganic nanostructures grown on graphene layers.
本文综述了目前关于直接在石墨烯层上生长的无机纳米结构杂化异质结构的研究活动,这些异质结构主要可以分为零维纳米粒子、一维纳米棒、纳米线和纳米管以及二维纳米墙。对于杂化结构,纳米结构表现出优异的材料特性,包括高载流子迁移率和辐射复合率以及长期稳定性,而石墨烯薄膜则表现出良好的光学透明度、机械柔韧性和导电性。因此,生长在石墨烯层上的纳米结构的多功能和迷人特性使得即使在可转移、灵活或可拉伸的形式下,也有可能制造高性能的光电和电子器件。在这里,我们综述了由生长在石墨烯层上的各种类型的无机纳米结构组成的杂化结构的制备方法和可能的器件应用。