Enhanced airborne nanoparticles mass sensing using a high-mode resonant silicon cantilever sensor

H. S. Wasisto, S. Merzsch, A. Waag, I. Kirsch, E. Uhde, T. Salthammer, E. Peiner
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引用次数: 5

Abstract

A high-mode resonant silicon cantilever sensor is developed for detection of airborne nanoparticles (NPs) by monitoring the change in resonant frequency induced by an additional trapped NPs mass. A piezoresistive bridge is integrated in the cantilever for signal sensing. An electrostatic method is employed to trap the NPs on the cantilever surface. The experimental results indicate that the cantilever sensor operated in the second resonant mode exhibits higher quality factor than the fundamental mode, i.e. 2100, implying that a higher sensitivity, i.e. 32.75 Hz/ng, can be attained by operation at higher resonant mode. The influences of thermal, pressure and relative humidity, respectively, on the sensor have also been investigated with the purpose of observing the limitation of sensor sensitivity imposed by the environment.
利用高模式谐振硅悬臂式传感器增强空气中纳米颗粒的质量传感
设计了一种高模谐振硅悬臂梁传感器,通过监测纳米粒子捕获质量引起的谐振频率变化来检测空气中的纳米粒子。在悬臂梁中集成了一个压阻桥,用于信号传感。采用静电法在悬臂表面捕获NPs。实验结果表明,工作在第二谐振模式下的悬臂式传感器比工作在基模模式下的2100具有更高的品质因子,这意味着工作在高谐振模式下可以获得更高的灵敏度,即32.75 Hz/ng。研究了温度、压力和相对湿度对传感器的影响,观察了环境对传感器灵敏度的限制。
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