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Dual-Mode Gas Sensor Composed of a Silicon Nanoribbon Field Effect Transistor and a Bulk Acoustic Wave Resonator: A Case Study in Freons

机译:由硅纳米带场效应晶体管和体声波谐振器组成的双模式气体传感器:以氟利昂为例

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摘要

In this paper, we develop a novel dual-mode gas sensor system which comprises a silicon nanoribbon field effect transistor (Si-NR FET) and a film bulk acoustic resonator (FBAR). We investigate their sensing characteristics using polar and nonpolar organic compounds, and demonstrate that polarity has a significant effect on the response of the Si-NR FET sensor, and only a minor effect on the FBAR sensor. In this dual-mode system, qualitative discrimination can be achieved by analyzing polarity with the Si-NR FET and quantitative concentration information can be obtained using a polymer-coated FBAR with a detection limit at the ppm level. The complementary performance of the sensing elements provides higher analytical efficiency. Additionally, a dual mixture of two types of freons (CFC-113 and HCFC-141b) is further analyzed with the dual-mode gas sensor. Owing to the small size and complementary metal-oxide semiconductor (CMOS)-compatibility of the system, the dual-mode gas sensor shows potential as a portable integrated sensing system for the analysis of gas mixtures in the future.
机译:在本文中,我们开发了一种新型的双模式气体传感器系统,该系统包括一个硅纳米带场效应晶体管(Si-NR FET)和一个薄膜体声谐振器(FBAR)。我们使用极性和非极性有机化合物研究了它们的感测特性,并证明了极性对Si-NR FET传感器的响应有重大影响,而对FBAR传感器的影响很小。在此双模系统中,可以通过使用Si-NR FET分析极性来实现定性判别,并且可以使用检测限为ppm级的聚合物涂层FBAR获得定量浓度信息。传感元件的互补性能可提供更高的分析效率。此外,使用双模式气体传感器进一步分析了两种氟利昂(CFC-113和HCFC-141b)的双重混合物。由于系统的小尺寸和互补金属氧化物半导体(CMOS)兼容性,因此双模式气体传感器在将来可作为便携式集成传感系统用于分析气体混合物而显示出潜力。

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