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Mechanistic Insights from Discrete Molecular Dynamics Simulations of Pesticide-Nanoparticle Interactions

机译:农药-纳米颗粒相互作用的离散分子动力学模拟的机理见解

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摘要

Nanoscale particles have the potential to modulate the transport, lifetimes, and ultimate uptake of pesticides that may otherwise be bound to agricultural soils. Engineered nanoparticles provide a unique platform for studying these interactions. In this study, we utilized discrete molecular dynamics (DMD) as a screening tool for examining nanoparticle—pesticide adsorptfve interactions. As a proof-of-concept, we selected a library of 15 pesticides common in the United States and 4 nanomaterials with likely natural or incidental sources, and simulated all possible nanoparticle—pesticide pairs. The resulting adsorption coefficients derived from DMD simulations ranged over several orders of magnitude, and in many cases were significantly stronger than pesticide adsorption on clay surfaces, highlighting the significance of specific nanoscale phases as a preferential media with which pesticides may associate. Binding was found to be significantly enhanced by the capacity to form hydrogen bonds with slightly hydroxylated fullerols, highlighting the importance of considering the precise nature of weathered nanomaterials as opposed to pristine precursors. Results were compared to experimental adsorption studies using selected pesticides, with a Pearson correlation coefficient of 0.97.
机译:纳米级颗粒具有调节农药的运输,寿命和最终吸收的潜力,这些农药原本可能与农业土壤结合在一起。工程纳米粒子为研究这些相互作用提供了一个独特的平台。在这项研究中,我们利用离散分子动力学(DMD)作为筛选工具来检查纳米颗粒与农药的吸附作用。作为概念验证,我们选择了一个由15种在美国常见的农药和4种具有自然或偶然来源的纳米材料组成的库,并模拟了所有可能的纳米颗粒-农药对。从DMD模拟得出的最终吸附系数范围达几个数量级,并且在许多情况下明显强于农药在粘土表面的吸附,突出了特定纳米级相作为农药可与之相结合的优先介质的重要性。发现通过与略微羟基化的富勒醇形成氢键的能力显着增强了结合,突出了考虑与原始的前体相比,风化的纳米材料的精确性质的重要性。将结果与使用选定农药的吸附实验进行比较,皮尔森相关系数为0.97。

著录项

  • 来源
    《Environmental Science & Technology》 |2017年第15期|8396-8404|共9页
  • 作者单位

    Center for the Environmental Implications of NanoTechnology, Department of Civil and Environmental Engineering, Duke University, Durham, North Carolina 27708, United States;

    College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China;

    Department of Physics and Astronomy, Clemson University, Clemson, South Carolina 29634, United States;

    College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China;

    Center for the Environmental Implications of NanoTechnology, Department of Civil and Environmental Engineering, Duke University, Durham, North Carolina 27708, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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