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Real-time single airborne nanoparticle detection with nanomechanical resonant filter-fiber

机译:纳米机械共振滤光纤维对单个机载纳米颗粒的实时检测

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Nanomechanical resonators have an unprecedented mass sensitivity sufficient to detect single molecules, viruses or nanoparticles. The challenge with nanomechanical mass sensors is the direction of nano-sized samples onto the resonator. In this work we present an efficient inertial sampling technique and gravimetric detection of airborne nanoparticles with a nanomechanical resonant filter-fiber. By increasing the nanoparticle momentum the dominant collection mechanism changes from diffusion to more efficient inertial impaction. In doing so we reach a single filter-fiber collection efficiency of 65 ± 31% for 28?nm silica nanoparticles. Finally, we show the detection of single 100?nm silver nanoparticles. The presented method is suitable for environmental or security applications where low-cost and portable monitors are demanded. It also constitutes a unique technique for the fundamental study of single filter-fiber behavior. We present the direct measurement of diffusive nanoparticle collection on a single filter-fiber qualitatively confirming Langmuir's model from 1942.
机译:纳米机械谐振器具有前所未有的质量灵敏度,足以检测单个分子,病毒或纳米颗粒。纳米机械质量传感器面临的挑战是将纳米尺寸样品定向到谐振器上。在这项工作中,我们提出了一种有效的惯性采样技术,并利用纳米机械共振滤光片纤维对了机载纳米颗粒进行了重量分析。通过增加纳米粒子的动量,主要的收集机制从扩散变为更有效的惯性碰撞。这样一来,对于28?nm的二氧化硅纳米颗粒,我们达到了65±31%的单过滤纤维收集效率。最后,我们展示了单个100?nm银纳米颗粒的检测。所提出的方法适用于需要低成本和便携式监视器的环境或安全应用。它也构成了用于研究单根过滤纤维特性的独特技术。我们提出了在单个滤光纤维上对扩散性纳米颗粒收集的直接测量,从质量上确定了1942年以来的Langmuir模型。

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