论文标题

通过光富集力诱导的实时纳米颗粒表征

Real-time nanoparticle characterization through opto-fluidic force induction

论文作者

Šimić, Marko, Auer, Doris, Neuper, Christian, Šimić, Nikola, Prossliner, Gerhard, Prassl, Ruth, Hill, Christian, Hohenester, Ulrich

论文摘要

我们提出并展示了一种新型的光学纳米颗粒表征,光氟诱导(OF2I)的方案,该方案以单粒子敏感性,高吞吐量,高吞吐量以及从数十纳米的粒度到几十纳米的粒度,可实现实时光学计数。要分析的颗粒通过微流体通道与弱聚焦的激光涡流束一起流动,该光束在纵向方向上完成了横向方向上颗粒的2D捕获,并依赖于尺寸的速度变化。监视每个单独跟踪粒子的轨迹和速度变化后,我们获得了有关基于数量的粒度分布的详细信息。证明基于麦克斯韦方程和MIE理论的无参数模型与球形形状的标准化粒子的实验结果提供了很好的一致性。我们的结果证明,OF2I可以为众多药物和技术应用以及医学诊断提供灵活的工作台。

We propose and demonstrate a novel scheme for optical nanoparticle characterization, optofluidic force induction (OF2i), which achieves real-time optical counting with single-particle sensitivity, high throughput, and for particle sizes ranging from tens of nanometers to several $μ$m. The particles to be analyzed flow through a microfluidic channel alongside a weakly focused laser vortex beam, which accomplishes 2D trapping of the particles in the transverse directions and size-dependent velocity changes due to the optical forces in the longitudinal direction. Upon monitoring the trajectories and velocity changes of each individually tracked particle, we obtain detailed information about the number based particle size distribution. A parameter-free model based on Maxwell's equations and Mie theory is shown to provide very good agreement with the experimental results for standardized particles of spherical shape. Our results prove that OF2i can provide a flexible work bench for numerous pharmaceutical and technological applications, as well as for medical diagnostics.

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