首页> 外文会议>2019 20th International Conference on Solid-State Sensors, Actuators and Microsystems amp; Eurosensors XXXIII >Real-Time Particle Spectrometry in Liquid Environment Using Microfluidic-Nanomechanical Resonators
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Real-Time Particle Spectrometry in Liquid Environment Using Microfluidic-Nanomechanical Resonators

机译:使用微流控纳米共振器在液体环境中进行实时粒子光谱分析

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Hollow nanomechanical resonators represent a promising technique for particle spectrometry, as their design allows highly sensitive particle mass sensing in liquid environments by putting together the good mechanical behavior of a nanomechanical resonator vibrating in vacuum or gas environment with physiological compatibility of liquid environments for biological applications. Nevertheless, for real-world practical applications these sensors require not only a high mass sensitivity but also a high-throughput particle flow. In this work, we use a fast-response and low-cost hollow nanomechanical resonator which let us measure up to 10 particles per second. However, this unprecedented particle velocities brings new implications related to the entanglement between the mechanics and the microfluidics in this structure. We realized that the measured particle masses depend on the fluid velocity. The study of this phenomenon demonstrates the need to introduce a correction factor in mass sensing dependent on particle velocity.
机译:空心纳米机械谐振器代表了一种很有前景的粒子光谱技术,因为其设计通过将在真空或气体环境中振动的纳米机械谐振器的良好机械性能与生物学应用中液体环境的生理相容性结合在一起,可以在液体环境中进行高灵敏度的颗粒质量传感。然而,对于现实世界的实际应用,这些传感器不仅需要高质量灵敏度,而且还需要高通量粒子流。在这项工作中,我们使用了快速响应且低成本的中空纳米机械谐振器,该谐振器使我们每秒可测量多达10个粒子。但是,这种前所未有的粒子速度带来了与该结构中的力学和微流体之间的纠缠有关的新含义。我们意识到,测得的颗粒质量取决于流体速度。对这一现象的研究表明,有必要在质量传感中引入一个取决于粒子速度的校正因子。

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