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Using single nanoparticle tracking obtained by nanophotonic force microscopy to simultaneously characterize nanoparticle size distribution and nanoparticle-surface interactions

机译:使用通过纳米光子力显微镜获得的单个纳米粒子跟踪来同时表征纳米粒子的大小分布和纳米粒子与表面的相互作用

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摘要

Comprehensive characterization of nanomaterials for medical applications is a challenging and complex task due to the multitude of parameters which need to be taken into consideration in a broad range of conditions. Routine methods such as dynamic light scattering or nanoparticle tracking analysis provide some insight into the physicochemical properties of particle dispersions. For nanomedicine applications the information they supply can be of limited use. For this reason, there is a need for new methodologies and instruments that can provide additional data on nanoparticle properties such as their interactions with surfaces. Nanophotonic force microscopy has been shown as a viable method for measuring the force between surfaces and individual particles in the nano-size range. Here we outline a further application of this technique to measure the size of single particles and based on these measurement build the distribution of a sample. We demonstrate its efficacy by comparing the size distribution obtained with nanophotonic force microscopy to established instruments, such as dynamic light scattering and differential centrifugal sedimentation. Our results were in good agreement to those observed with all other instruments. Furthermore, we demonstrate that the methodology developed in this work can be used to study complex particle mixtures and the surface alteration of materials. For all cases studied, we were able to obtain both the size and the interaction potential of the particles with a surface in a single measurement.
机译:由于在广泛的条件下需要考虑的众多参数,用于医疗应用的纳米材料的全面表征是一项艰巨而复杂的任务。诸如动​​态光散射或纳米颗粒跟踪分析之类的常规方法为颗粒分散体的物理化学性质提供了一些见识。对于纳米医学应用,它们提供的信息可能用途有限。出于这个原因,需要能够提供有关纳米粒子特性(例如其与表面的相互作用)的其他数据的新方法和仪器。纳米光子力显微镜已被证明是一种测量纳米尺寸范围内的表面与单个颗粒之间的力的可行方法。在这里,我们概述了该技术在测量单个颗粒尺寸方面的进一步应用,并基于这些测量结果建立了样本的分布。我们通过将纳米光子力显微镜获得的尺寸分布与已建立的仪器(例如动态光散射和离心分离沉降)进行比较来证明其功效。我们的结果与所有其他仪器所观察到的结果非常吻合。此外,我们证明了这项工作中开发的方法可用于研究复杂的颗粒混合物和材料的表面变化。对于所有研究的案例,我们都能通过一次测量获得颗粒与表面的尺寸和相互作用势。

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