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Spectrally Selective and Highly Sensitive UV Photodetection with UV-A,C Band Specific Polarity Switching in Silver Plasmonic Nanoparticle Enhanced Gallium Oxide Thin-Film
被引:47
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Singh, Dhruv P.
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Indian Inst Technol Bhilai, Dept Phys, GEC Campus, Raipur 492015, Chhattisgarh, India
Max Planck Inst Intelligent Syst, Heisenbergstr 3, D-70569 Stuttgart, Germany Indian Inst Technol Ropar, Funct & Renewable Energy Mat Lab, Rupnagar 140001, Punjab, India

Fischer, Peer
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Max Planck Inst Intelligent Syst, Heisenbergstr 3, D-70569 Stuttgart, Germany
Univ Stuttgart, Inst Phys Chem, Pfaffenwaldring 55, D-70569 Stuttgart, Germany Indian Inst Technol Ropar, Funct & Renewable Energy Mat Lab, Rupnagar 140001, Punjab, India

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[1] Indian Inst Technol Ropar, Funct & Renewable Energy Mat Lab, Rupnagar 140001, Punjab, India
[2] Indian Inst Technol Bhilai, Dept Phys, GEC Campus, Raipur 492015, Chhattisgarh, India
[3] Max Planck Inst Intelligent Syst, Heisenbergstr 3, D-70569 Stuttgart, Germany
[4] Univ Stuttgart, Inst Phys Chem, Pfaffenwaldring 55, D-70569 Stuttgart, Germany
关键词:
dual wavelength;
hot electrons;
plasmons;
polarity reversion;
solar-blind photodetectors;
SOLAR-BLIND PHOTODETECTOR;
PERFORMANCE;
DETECTORS;
DEVICES;
D O I:
10.1002/adom.202000212
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Traditional photodetectors generally show a unipolar photocurrent response when illuminated with light of wavelength equal or shorter than the optical bandgap. Here, it is reported that a thin film of gallium oxide (GO) decorated with plasmonic nanoparticles, surprisingly, exhibits a change in the polarity of the photocurrent for different UV bands. Silver nanoparticles (Ag NPs) are vacuum-deposited onto beta-Ga2O3 and the AgNP@GO thin films show a record responsivity of 250 A W-1, which significantly outperforms bare GO planar photodetectors. The photoresponsivity reverses sign from +157 mu A W-1 in the UV-C band under unbiased operation to -353 mu A W-1 in the UV-A band. The current reversal is rationalized by considering the charge dynamics stemming from hot electrons generated when the incident light excites a local surface plasmon resonance in the Ag nanoparticles. The Ag nanoparticles improve the external quantum efficiency and detectivity by nearly one order of magnitude with high values of 1.2 x 10(5) and 3.4 x 10(14) Jones, respectively. This plasmon-enhanced solar blind GO detector allows UV regions to be spectrally distinguished, which is useful for the development of sensitive dynamic imaging photodetectors.
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