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Measuring single-nanoparticle wetting properties by freeze-fracture shadow-casting cryo-scanning electron microscopy

机译:通过冷冻断裂影铸低温扫描电子显微镜测量单纳米颗粒的润湿性

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Nanoparticles at fluid interfaces are central to a rapidly increasing range of cutting-edge applications, including drug delivery, uptake through biological membranes, emulsion stabilization and the fabrication of nanocomposites. Understanding nanoscale wetting is a challenging issue, still unresolved for individual nanoparticles, and is essential in designing nanoparticle-building blocks with controlled surface properties. The core information about the structural and thermodynamic properties of particles at fluid interfaces is enclosed in the three-phase contact angle θ. Here we present a novel in situ method, on the basis of freeze-fracture shadow-casting cryo-scanning electron microscopy, that allows the measurement of contact angles of individual nanoparticles with 10?nm diameter, and thus greatly surpasses the current state of the art. We study hydrophilic and hydrophobic, organic and inorganic nanoparticles, demonstrating general applicability to systems of fundamental and applied nanotechnological interest. Significant heterogeneity in the wetting of nanoparticles is observed.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:流体界面处的纳米颗粒对于迅速增加的前沿应用至关重要,包括药物输送,通过生物膜的吸收,乳液稳定化和纳米复合材料的制造。了解纳米级润湿是一个具有挑战性的问题,对于单个纳米颗粒而言仍未解决,并且对于设计具有可控表面特性的纳米颗粒构建基块至关重要。关于流体界面处的颗粒的结构和热力学性质的核心信息包含在三相接触角θ中。在这里,我们提出了一种新的原位方法,基于冷冻断裂的影射式冷冻扫描电子显微镜,可以测量直径为10?nm的单个纳米粒子的接触角,从而大大超越了纳米粒子的当前状态。艺术。我们研究了亲水性和疏水性,有机和无机纳米粒子,证明了对基本和应用纳米技术感兴趣的系统的一般适用性。在纳米颗粒的润湿中观察到明显的异质性。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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