Showing 161 - 180 results of 9,356 for search '(( significant trap based ) OR ( significant ((new decrease) OR (nn decrease)) ))', query time: 1.54s Refine Results
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    Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers by Zhun Ran (18512788)

    Published 2025
    “…Traps, due to the ability to capture, store, and release charge carriers, have attracted significant attention in the construction of long afterglow materials. …”
  6. 166

    Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers by Zhun Ran (18512788)

    Published 2025
    “…Traps, due to the ability to capture, store, and release charge carriers, have attracted significant attention in the construction of long afterglow materials. …”
  7. 167

    Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers by Zhun Ran (18512788)

    Published 2025
    “…Traps, due to the ability to capture, store, and release charge carriers, have attracted significant attention in the construction of long afterglow materials. …”
  8. 168

    Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers by Zhun Ran (18512788)

    Published 2025
    “…Traps, due to the ability to capture, store, and release charge carriers, have attracted significant attention in the construction of long afterglow materials. …”
  9. 169

    Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers by Zhun Ran (18512788)

    Published 2025
    “…Traps, due to the ability to capture, store, and release charge carriers, have attracted significant attention in the construction of long afterglow materials. …”
  10. 170

    Time-Dependent Room-Temperature Afterglow of Carbon Dots Constructed by Trap-Induced Multiemission Centers by Zhun Ran (18512788)

    Published 2025
    “…Traps, due to the ability to capture, store, and release charge carriers, have attracted significant attention in the construction of long afterglow materials. …”
  11. 171

    Data and Code from: Smart vision-based monitoring system for AI-driven moth population estimation using camera-equipped trap imaging by Alison Gerken (17362585)

    Published 2025
    “…Artificial intelligence (AI) and machine learning can provide the models necessary for accurate identification and population-counting within a trap-based system. This study presents the development of a smart vision-based monitoring system for moth population estimation using sticky traps with automated camera imaging. …”
  12. 172

    Lens imaging opposition-based learning. by Yuqi Xiong (12343771)

    Published 2025
    “…<div><p>Metaheuristic optimization algorithms often face challenges such as complex modeling, limited adaptability, and a tendency to get trapped in local optima when solving complex optimization problems. …”
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