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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Sizing of Metallic Nanoparticles Confined to a Microfluidic Film Applying Dark-Field Particle Tracking
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Sizing of Metallic Nanoparticles Confined to a Microfluidic Film Applying Dark-Field Particle Tracking

机译:限制在微流控薄膜中的金属纳米粒子的尺寸调整,应用暗场粒子跟踪

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We present Brownian motion-based sizing of individual submicron and nanoparticles in liquid samples. The advantage of our approach is that particles can freely diffuse in a 10 μm thin liquid film and are therefore always within the focal depth of a low numerical aperture objective. Particles are visualized with darkfield microscopy, and the resulting diffraction-limited spots are tracked over a wide field of view of several hundred micrometers. Consequently, it is ascertained that long 2D trajectories are acquired, which leads to significantly increased particle sizing precision. The hydrodynamic diameters of metal particles with nominal sizes ranging from 70 to 200 nm in aqueous solution were determined by tracking for up to 2 min, and it was investigated if the diffusion characteristics were influenced by the proximity of substrates. This was not the case, and the estimated diameters were in good agreement with the values obtained by electron microscopy, thus validating the particle sizing principle. Furthermore, we measured a sample mixture to demonstrate the distinction of close particle sizes and performed the conjugation of a model protein (BSA) on the nanoparticle surface. An average increase in the radius of 9 nm was determined, which corresponds to the size of the BSA protein.
机译:我们介绍了基于布朗运动的液体样品中单个亚微米和纳米颗粒的大小。我们方法的优势在于,粒子可以在10μm的薄液膜中自由扩散,因此始终处于低数值孔径物镜的焦深之内。用暗场显微镜观察颗粒,然后在几百微米的宽视野内跟踪所得的衍射极限斑点。因此,可以确定获得了较长的2D轨迹,从而显着提高了颗粒尺寸的精度。通过追踪最多2分钟来确定标称尺寸为70-200 nm的金属颗粒在水溶液中的流体力学直径,并研究了扩散特性是否受基材的影响。情况并非如此,估计的直径与通过电子显微镜获得的值非常吻合,从而验证了粒径的原理。此外,我们测量了样品混合物以证明接近粒径的区别,并在纳米颗粒表面进行了模型蛋白(BSA)的缀合。确定半径平均增加9 nm,这与BSA蛋白的大小相对应。

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