Fused solar-blind UV/VIS Bi-spectral sensing and imaging with vertically stacking ZnGa 2 O 4 /MAPbI 3 structure

Various spectral bands provide different types of information, and information enhancement could be achieved by selective fusion of different spectral bands. The fused solar-blind Ultraviolet (UV)/Visible (VIS) bi-spectral sensing and imaging can provide the precise location of UV targets in virtue...

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Veröffentlicht in:Nanotechnology 2023-06, Vol.34 (24), p.245205
Hauptverfasser: Liu, Jiaxin, Ni, Mingzhu, Zou, Jikuang, Gu, Wanzhong, Xu, Xiaobao, Zou, Yousheng
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Sprache:eng
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Zusammenfassung:Various spectral bands provide different types of information, and information enhancement could be achieved by selective fusion of different spectral bands. The fused solar-blind Ultraviolet (UV)/Visible (VIS) bi-spectral sensing and imaging can provide the precise location of UV targets in virtue of VIS background, which has been increasingly promoted. However, most reported UV/VIS bi-spectral photodetectors (PDs) only have one single channel towards a broadband spectrum of both UV and VIS light, which cannot distinguish two kinds of signals, hindering the image fusion of bi-spectral signals. This work demonstrates the solar-blind UV/VIS bi-spectral PD based on vertically stacking perovskite of MAPbI and ternary oxide of ZnGa O with independent and distinct response toward solar-blind UV and VIS light in a single pixel. The PD exhibits excellent sensing properties with an / ratio of >10 and 10 , detectivity of >10 and 10 Jones, and response decay time of 90 s and 16 ms for VIS and UV channels, respectively. The successful fusion of VIS and UV images suggests that our bi-spectral PD can be applied in the accurate identification of corona discharge and fire detection.
ISSN:0957-4484
1361-6528
DOI:10.1088/1361-6528/acc592