Mid-Infrared Photodetection of Type-II Dirac Semimetal 1T-PtTe2 Grown by Molecular Beam Epitaxy
Autor: | Zhihao He, Ximiao Wang, Tianyao Wei, Shuxiang Wu, Zhuang Xie, Qi Yang, Huanjun Chen, Shuwei Li, Peng Yu |
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Rok vydání: | 2021 |
Předmět: |
Materials science
business.industry Infrared Photodetector 02 engineering and technology Photodetection 010402 general chemistry 021001 nanoscience & nanotechnology Polarization (waves) 01 natural sciences Semimetal 0104 chemical sciences Responsivity Optoelectronics General Materials Science Thin film 0210 nano-technology business Molecular beam epitaxy |
Zdroj: | ACS Applied Materials & Interfaces. 13:22757-22764 |
ISSN: | 1944-8252 1944-8244 |
DOI: | 10.1021/acsami.1c04598 |
Popis: | Mid-infrared (MIR) photodetection is of significance in civil and military applications because it shows superiority in absorbing the vibration of various molecules and covering atmospheric transmission windows. Recently, the PtTe2, a typical type-II Dirac semimetal, has come under the spotlight due to its unique photodetection sensibility in the MIR region and robust stability in the atmosphere. Here, the high-quality and large-scale 1T-PtTe2 thin films with air stability were grown by molecular beam epitaxy. Broadband photoresponse of the photodetectors of PtTe2 from 420 nm to 10.7 μm shows high responsivity and detectivity of 0.2 mA W-1 and 2.6 × 107 Jones at 10.7 μm and 1.6 mA W-1 and 2.2 × 108 Jones at 4.7 μm under the atmosphere, respectively. Moreover, the photodetectors exhibit high sensitivity in visible and near-infrared regions (8.2 mA W-1 at 650 nm and 15.6 mA W-1 at 960 nm). The power- and polarization-dependent photoresponse measurements reveal the linear relationship of power photoresponse and obvious anisotropic photoresponse (the ratio of anisotropy ellipse is 8.3 at 10.7 μm), respectively. These results suggest that the PtTe2 could be expected to be an advanced photodetection material for polarization angle-sensitive detection, infrared imaging, and photodetection from the visible to MIR range. |
Databáze: | OpenAIRE |
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