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利用微机电系统(MEMS)谐振器的多模式激发进行选择性多分析物检测。

Selective multiple analyte detection using multi-mode excitation of a MEMS resonator.

作者信息

Yaqoob Usman, Jaber Nizar, Alcheikh Nouha, Younis Mohammad I

机构信息

Physical Science and Engineering Division, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

Department of Mechanical Engineering and the Center for Communication Systems and Sensing, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.

出版信息

Sci Rep. 2022 Mar 28;12(1):5297. doi: 10.1038/s41598-022-09365-9.

Abstract

This work reports highly selective multiple analyte detection by exploiting two different mechanisms; absorption and thermal conductivity using a single MEMS device. To illustrate the concept, we utilize a resonator composed of a clamped-guided arch beam connected to a flexural beam and a T-shaped moveable mass. A finite element model is used to study the mode shapes and mechanical behavior of the device with good agreement reported with the experimental data. The resonator displays two distinct out-of-plane modes of vibration. For humidity detection, we utilize physisorption by functionalizing the surface with graphene oxide (GO), which has strong affinity toward water vapors. The GO solution is prepared and drop-casted over the mass surface using an inkjet printer. On the other hand, cooling the heated flexural beams is used for helium (He) detection (thermal-conductivity-based sensor). The sensor characteristics are extensively studied when the modes are individually and simultaneously actuated. Results affirm the successful utilization of each mode for selective detection of relative humidity and He. This novel mode-dependent selective detection of multiple analytes can be a promising building block for the development of miniature, low-powered, and selective smart sensors for modern portable electronic devices.

摘要

这项工作报告了通过利用两种不同机制,即使用单个微机电系统(MEMS)器件的吸收和热导率,来实现高选择性的多分析物检测。为了说明这一概念,我们使用了一个由连接到弯曲梁和T形可移动质量块的夹固导向拱形梁组成的谐振器。使用有限元模型来研究该器件的振型和力学行为,结果表明其与实验数据吻合良好。该谐振器展示了两种不同的面外振动模式。对于湿度检测,我们通过用对水蒸气具有强亲和力的氧化石墨烯(GO)对表面进行功能化来利用物理吸附。制备GO溶液并使用喷墨打印机将其滴铸在质量块表面。另一方面,冷却加热的弯曲梁用于氦气(He)检测(基于热导率的传感器)。当分别和同时驱动这些模式时,对传感器特性进行了广泛研究。结果证实了每种模式在选择性检测相对湿度和氦气方面的成功应用。这种基于模式的新型多分析物选择性检测对于开发用于现代便携式电子设备的微型、低功耗和选择性智能传感器而言,可能是一个很有前景的构建模块。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1abf/8964735/c70a61d5ccba/41598_2022_9365_Fig1_HTML.jpg

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