Graphene/SnS2van der Waals Photodetector with High Photoresponsivity and High Photodetectivity for Broadband 365-2240 nm Detection
Journal
ACS Applied Materials and Interfaces
Journal Volume
13
Journal Issue
39
Pages
47198-47207
Date Issued
2021
Author(s)
Zhao, Yue
Tsai, Tsung-Yin
Wu, Gang
Ó Coileáin, Cormac
Zhao, Yan-Feng
Zhang, Duan
Hung, Kuan-Ming
Wu, Han-Chun
Abstract
The fabrication of graphene/SnS2van der Waals photodetectors and their photoelectrical properties are systematically investigated. It was found that a dry transferred graphene/SnS2van der Waals heterostructure had a broadband sensing range from ultraviolet (365 nm) to near-infrared (2.24 μm) and respective improved responsivities and photodetectivities of 7.7 × 103A/W and 8.9 × 1013jones at 470 nm and 2 A/W and 1.8 × 1010jones at 1064 nm. Moreover, positive and negative photoconductance effects were observed when the photodetectors were illuminated by photon sources with energies greater and smaller than the bandgap of SnS2, respectively. The photoresponsivity (R) versus incident power density (P) follows the empirical lawR?Pinβ, with β > ?1 for positive photoconductance effects and β < ?1 for negative photoconductance effects. On the basis of the Fowler-Nordheim tunneling model and a Poisson and drift-diffusion simulation, we show quantitatively that the barrier height and barrier width of the heterostructure photodetector could be controlled by a laser and an external electrical field through a photogating effect generated by carriers trapped at the interface, which could be used to tune the separation and transport of photogenerated carriers. Our results may be useful for the design of high performance van der Waals heterojunction photodetectors. ? 2021 American Chemical Society
Subjects
broadband photodetector
graphene
negative photoconductance effect
photogating effect
SnS2
van der Waals heterostructure
Graphene
Infrared devices
IV-VI semiconductors
Photodetectors
Photons
Semiconducting tin compounds
Sulfur compounds
Van der Waals forces
'Dry' [
Broadband photodetector
Negative photoconductance effect
Photo-electrical properties
Photoconductance
Photogating effect
Photoresponsivity
Sensing ranges
Van der Waal
Van der waal heterostructure
Heterojunctions
Type
journal article