ICFO-Institut de Ciencies Fotoniques, Mediterranean Technology Park, 08860, Castelldefels, Barcelona, Spain.
Vienna University of Technology, Institute of Photonics, Guβhausstraβe 27-29, 1040 Vienna, Austria.
Nat Nanotechnol. 2014 Oct;9(10):780-93. doi: 10.1038/nnano.2014.215.
Graphene and other two-dimensional materials, such as transition metal dichalcogenides, have rapidly established themselves as intriguing building blocks for optoelectronic applications, with a strong focus on various photodetection platforms. The versatility of these material systems enables their application in areas including ultrafast and ultrasensitive detection of light in the ultraviolet, visible, infrared and terahertz frequency ranges. These detectors can be integrated with other photonic components based on the same material, as well as with silicon photonic and electronic technologies. Here, we provide an overview and evaluation of state-of-the-art photodetectors based on graphene, other two-dimensional materials, and hybrid systems based on the combination of different two-dimensional crystals or of two-dimensional crystals and other (nano)materials, such as plasmonic nanoparticles, semiconductors, quantum dots, or their integration with (silicon) waveguides.
石墨烯和其他二维材料,如过渡金属二卤化物,已迅速成为光电应用中引人入胜的构建模块,其研究重点主要集中在各种光电探测平台上。这些材料系统的多功能性使其能够应用于包括超快和超灵敏的紫外光、可见光、红外光和太赫兹频率范围内的光探测。这些探测器可以与基于同一材料的其他光子组件以及硅光子和电子技术集成。在这里,我们提供了基于石墨烯、其他二维材料以及基于不同二维晶体的组合或二维晶体与其他(纳米)材料(如等离子体纳米粒子、半导体、量子点)的混合系统的最新光电探测器的概述和评估,或者将其与(硅)波导集成。