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Surface characterization of nanoparticles using near-field light scattering

机译:使用近场光散射的纳米颗粒表面表征

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摘要

The effect of nanoparticle surface coating characteristics on colloidal stability in solution is a critical parameter in understanding the potential applications of nanoparticles, especially in biomedicine. Here we explored the modification of the surface of poly(ethylene glycol)-coated superparamagnetic iron oxide nanoparticles (PEG-SPIOs) with the synthetic pseudotannin polygallol via interpolymer complexation (IPC). Changes in particle size and zeta potential were indirectly assessed via differences between PEG-SPIOs and IPC-SPIOs in particle velocity and scattering intensity using near-field light scattering. The local scattering intensity is correlated with the distance between the particle and waveguide, which is affected by the size of the particle (coating thickness) as well as the interactions between the particle and waveguide (related to the zeta potential of the coating). Therefore, we report here the use of near-field light scattering using nanophotonic force microscopy (using a NanoTweezerTM instrument, Halo Labs) to determine the changes that occurred in hydrated particle characteristics, which is accompanied by an analytical model. Furthermore, we found that altering the salt concentration of the suspension solution affected the velocity of particles due to the change of dielectric constant and viscosity of the solution. These findings suggest that this technique is suitable for studying particle surface changes and perhaps can be used to dynamically study reaction kinetics at the particle surface.
机译:纳米粒子表面涂层特性对溶液中胶体稳定性的影响是理解纳米粒子潜在应用的关键参数,尤其是在生物医学中。在这里,我们探讨了通过互聚物络合(IPC)用合成的假单宁多元醇修饰聚乙二醇包覆的超顺磁性氧化铁纳米粒子(PEG-SPIOs)的表面。使用近场光散射通过PEG-SPIO和IPC-SPIO之间在颗粒速度和散射强度方面的差异间接评估粒径和zeta电位的变化。局部散射强度与颗粒和波导之间的距离相关,该距离受颗粒尺寸(涂层厚度)以及颗粒和波导之间的相互作用(与涂层的ζ电势有关)的影响。因此,我们在这里报告使用纳米光子力显微镜(使用NanoTweezer TM 仪器,Halo Labs)进行近场光散射,以确定水合颗粒特征发生的变化,并伴随着分析模型。此外,我们发现改变悬浮液的盐浓度会由于介电常数和溶液粘度的变化而影响颗粒的速度。这些发现表明,该技术适用于研究颗粒表面的变化,也许可以用于动态研究颗粒表面的反应动力学。

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