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Contact Forces between Single Metal Oxide Nanoparticlesin Gas-Phase Applications and Processes

机译:单金属氧化物纳米颗粒之间的接触力在气相应用和工艺中的应用

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摘要

In this work we present a comprehensive experimental study to determine the contact forces between individual metal oxide nanoparticles in the gas-phase using atomic force microscopy. In addition, we determined the amount of physisorbed water for each type of particle surface. By comparing our results with mathematical models of the interaction forces, we could demonstrate that classical continuum models of van der Waals and capillary forces alone cannot sufficiently describe the experimental findings. Rather, the discrete nature of the molecules has to be considered, which leads to ordering at the interface and the occurrence of solvation forces. We demonstrate that inclusion of solvation forces in the model leads to quantitative agreement with experimental data and that tuning of the molecular order by addition of isopropanol vapor allows us to control the interaction forces between the nanoparticles.
机译:在这项工作中,我们提出了一项全面的实验研究,以确定使用原子力显微镜在气相中的各个金属氧化物纳米粒子之间的接触力。此外,我们确定了每种类型的粒子表面的物理吸附水量。通过将我们的结果与相互作用力的数学模型进行比较,我们可以证明仅范德华力和毛细管力的经典连续谱模型无法充分描述实验结果。而是,必须考虑分子的离散性质,这导致界面上的有序化和溶剂化力的出现。我们证明了在模型中包括溶剂化力导致与实验数据的定量一致,并且通过添加异丙醇蒸气来调节分子顺序使我们能够控制纳米粒子之间的相互作用力。

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