4.8 Article

Integration of synaptic phototransistors and quantum dot light-emitting diodes for visualization and recognition of UV patterns

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SCIENCE ADVANCES
卷 8, 期 41, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.abq3101

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资金

  1. Institute for Basic Science [IBS -R006 -D1, IBS -R006 -A1]
  2. National Research Foundation (NRF)
  3. Future Resource Research Program of the Korea Institute of Science and Technology (KIST) [2E31532]
  4. Korea Medical Device Development Fund - Korea government [2021R1C1C100799711, KMDF_PR_20200901_0114]

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The study utilizes synaptic photodetectors to achieve photon-triggered synaptic plasticity, developing an integrated device for noise reduction, visualization of UV patterns, and enhanced image contrast, which improves high-accuracy image recognition.
Synaptic photodetectors exhibit photon-triggered synaptic plasticity, which thus can improve the image recognition rate by enhancing the image contrast. However, still, the visualization and recognition of invisible ultraviolet (UV) patterns are challenging, owing to intense background noise. Here, inspired by all-or-none potentiation of synapse, we develop an integrated device of synaptic phototransistors (SPTrs) and quantum dot light-emitting diodes (QLEDs), facilitating noise reduction and visualization of UV patterns through on-device preprocessing. The SPTrs convert noisy UV inputs into a weighted photocurrent, which is applied to the QLEDs as a voltage input through an external current-voltage-converting circuit. The threshold switching characteristics of the QLEDs result in amplified current and visible illumination by the suprathreshold input voltage or nearly zero current and no visible illumination by the input voltage below the threshold. The preprocessing of image data with the SPTr-QLED can amplify the image contrast, which is helpful for high-accuracy image recognition.

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