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improved decrease » improved urease (Expand Search), marked decrease (Expand Search)
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Showing 1 - 20 results of 20,923 for search '(( significantly improved decrease ) OR ( significantly enhanced release ))', query time: 0.72s Refine Results
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    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
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    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
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    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
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    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  10. 10

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
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    Biocompatible Nano-Cocrystal Engineering for Targeted Herbicide Delivery: Enhancing Efficacy through Stimuli-Responsive Release and Reduced Environmental Losses by Yuntian Xiao (9967662)

    Published 2024
    “…Developed through synergistic supramolecular self-assembly and mechanochemical nanotechnology, this Nano-Cocrystal significantly enhances pesticide performance. It exhibits a marked improvement in stability, with reductions in hygroscopicity and volatility by approximately 38%. …”
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