Temperature-dependent photoresponse of monolayer MoS2 film grown by pulsed laser deposition
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1.Technical Center for Multifunctional Magneto-Optical Spectroscopy (Shanghai), Engineering Research;Center of Nanophotonics & Advanced Instrument (Ministry of Education), Department of Materials, School of Physics and Electronic Science, East China Normal University, Shanghai 200241, China;2.Shanghai Institute of Intelligent Electronics & Systems, Fudan University, Shanghai 200433, China

Clc Number:

O43

Fund Project:

Supported by the National Key R&D Program of China (2018YFB0406500 , 2019YFB2203400); the Natural Science Foundation of China (91833303,61974043,61674057); Projects of Science and Technology Commission of Shanghai Municipality (18JC1412400, 18YF1407200,18YF1407000,19511120100).

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    Abstract:

    We report the preparation and photoresponse of MoS2 films with different layers grown on c-Al2O3 by pulsed laser deposition (PLD). The phonon modes and crystallographic orientation discussed by Raman scattering and X-ray diffraction (XRD) prove that the MoS2 films are of pure 2H-phase. The S/Mo ratio of film is identified as 1.92:1 derived by X-ray photoelectron (XPS) experiments. The blue and red shifts of the Mo 3d peaks for XPS data indicate the existence of oxidation and sulfur defects in the films. Moreover, by Raman and photoluminescence (PL) mapping, the film thickness is proven to be uniform. The temperature-dependent photoresponse of monolayer MoS2 film indicates that the temperature plays an important role in the photoresponse intensity and response time. The present results can provide a reference for further improving the performance of MoS2-based photodetectors.

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XIE Ming-Zhang, LI Liu-Meng, LI Ming, YE Yan, ZHANG Jin-Zhong, JIANG Kai, SHANG Li-Yan, HU Zhi-Gao, CHU Jun-Hao. Temperature-dependent photoresponse of monolayer MoS2 film grown by pulsed laser deposition[J]. Journal of Infrared and Millimeter Waves,2021,40(3):302~307

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History
  • Received:August 02,2020
  • Revised:May 20,2021
  • Adopted:September 25,2020
  • Online: April 27,2021
  • Published: June 25,2021
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