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Strategy toward Miniaturized, Self-out-Readable Resonant Cantilever and Integrated Electrostatic Microchannel Separator for Highly Sensitive Airborne Nanoparticle Detection

机译:小型化,自出可读共振悬臂和集成静电微通道分离器的策略,用于高敏感空气纳米粒子检测

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摘要

In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitive airborne nanoparticle (NP) detection is presented. The cantilever, which is operated in the fundamental in-plane resonance mode, is used as a microbalance with femtogram resolution. To maximize sensitivity and read-out signal amplitude of the piezo-resistive Wheatstone half bridge, the geometric parameters of the sensor design are optimized by finite element modelling (FEM). The electrical read-out of the cantilever movement is realized by piezo-resistive struts at the sides of the cantilever resonator that enable real-time tracking using a phase-locked loop (PLL) circuit. Cantilevers with minimum resonator mass of 1.72 ng and resonance frequency of ~440 kHz were fabricated, providing a theoretical sensitivity of 7.8 fg/Hz. In addition, for electrostatic NP collection, the cantilever has a negative-biased electrode located at its free end. Moreover, the counter-electrode surrounding the cantilever and a µ-channel, guiding the particle-laden air flow towards the cantilever, are integrated with the sensor chip. µ-channels and varying sampling voltages will also be used to accomplish particle separation for size-selective NP detection. To sum up, the presented airborne NP sensor is expected to demonstrate significant improvements in the field of handheld, micro-/nanoelectromechanical systems (M/NEMS)-based NP monitoring devices.
机译:本文提出了一种用于高敏感的空气纳米粒子(NP)检测的自动读取的小型化悬臂谐振器。在基本面内共振模式下运行的悬臂用作汇总分辨率的微量矛盾。为了最大化压电惠斯通半桥的灵敏度和读出信号幅度,传感器设计的几何参数通过有限元建模(FEM)进行了优化。悬臂运动的电读出通过在悬臂谐振器的侧面处的压电支柱实现,其能够使用锁相环(PLL)电路进行实时跟踪。制造最小谐振器质量和〜440 kHz的最小谐振器质量的悬臂器,提供了7.8 / Hz的理论敏感性。另外,对于静电NP收集,悬臂具有位于其自由端的负偏置电极。此外,围绕悬臂和μ通道的反电极,引导朝向悬臂的粒子载有气流,与传感器芯片集成。 μ通道和变化的采样电压还将用于实现粒子分离,用于尺寸选择性NP检测。总而言之,所提出的空中NP传感器预计将展示手持式,微/纳米机电系统(M / NEM)的基础NP监测装置的显着改进。

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