Photodetectors of 2D Materials from Ultraviolet to Terahertz Waves
Top Cited Papers
- 9 March 2021
- journal article
- review article
- Published by Wiley in Advanced Materials
- Vol. 33 (15), 2008126
- https://doi.org/10.1002/adma.202008126
Abstract
2D materials are considered to be the most promising materials for photodetectors due to their unique optical and electrical properties. Since the discovery of graphene, many photodetectors based on 2D materials have been reported. However, the low quantum efficiency, large noise, and slow response caused by the thinness of 2D materials limit their application in photodetectors. Here, recent progress on 2D material photodetectors is reviewed, covering the spectrum from ultraviolet to terahertz waves. First the interaction of 2D materials with light is analyzed in terms of optical physics. Then the present methods to improve the performance of 2D material photodetectors are summarized, such as defect engineering, p–n junctions and hybrid detectors, and the issue of serious overestimation of the performance in reported photodetectors based on 2D materials is discussed. Next, a comparison of 2D material photodetectors with traditional commercially available detectors shows that it is difficult to balance the current 2D material photodetectors with regard to having simultaneously both high sensitivity and fast response. Finally, a possible novel EIW mechanism is suggested to advance the performance of 2D material photodetectors in the future.Keywords
Funding Information
- Chinese Academy of Sciences (ZDBS‐LY‐JSC025)
This publication has 107 references indexed in Scilit:
- Low-Frequency Electronic Noise in Single-Layer MoS2 TransistorsNano Letters, 2013
- Microcavity-Integrated Graphene PhotodetectorNano Letters, 2012
- Controlling Bulk Conductivity in Topological Insulators: Key Role of Anti‐Site DefectsAdvanced Materials, 2012
- Microscopic Mechanism of 1/f Noise in Graphene: Role of Energy Band DispersionACS Nano, 2011
- Broadband terahertz wave remote sensing using coherent manipulation of fluorescence from asymmetrically ionized gasesNature Photonics, 2010
- Resistance Noise in Electrically Biased Bilayer GraphenePhysical Review Letters, 2009
- Fine Structure Constant Defines Visual Transparency of GrapheneScience, 2008
- Electric Field Effect in Atomically Thin Carbon FilmsScience, 2004
- Detection, mixing, and frequency multiplication of terahertz radiation by two-dimensional electronic fluidIEEE Transactions on Electron Devices, 1996
- Shallow water analogy for a ballistic field effect transistor: New mechanism of plasma wave generation by dc currentPhysical Review Letters, 1993