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首页> 外文期刊>Journal of the Serbian Chemical Society >Influence of Mie scattering on nanoparticles with different particle sizes and shapes: photometry and analytical ultracentrifugation with absorption optics
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Influence of Mie scattering on nanoparticles with different particle sizes and shapes: photometry and analytical ultracentrifugation with absorption optics

机译:米氏散射对具有不同粒径和形状的纳米粒子的影响:光度法和吸收光学分析超离心

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摘要

Nanoparticles are used in large quantities for very different applications. A precise determination of the diameter and the particle size distribution which is responsible for the application properties is therefore essential. Reliable methods for measuring the above mentioned quantities are photometric measurements and analytical ultracentrifugation with an UV optics detector. Both methods are ruled by the Mie effect, that is scattering and absorption of the particles as function of the diameter, the wavelength, and the shape of the particles. The extinction coefficients ε = τ/c for spheres, rods, and core shell particles have been calculated and plotted over a wide range of the size parameter π d/λ. Two examples for multimodal latex particles and core shell particles have been given and demonstrate the applicability of the method.
机译:纳米颗粒大量用于非常不同的应用。因此,精确确定直径和粒径分布是决定应用性能的关键。测量上述数量的可靠方法是光度测量和使用UV光学检测器的分析超速离心。两种方法均受米氏效应的支配,即米氏粒子的散射和吸收随粒子直径,波长和形状的变化而变化。已经计算出球,棒和核壳颗粒的消光系数ε=τ/ c,并在尺寸参数πd /λ的较大范围内绘制了消光系数。给出了多峰胶乳颗粒和核壳颗粒的两个例子,证明了该方法的适用性。

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