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Novel undercoupled radio-frequency (RF) resonant...
Journal article

Novel undercoupled radio-frequency (RF) resonant sensor for gaseous ethanol and interferents detection

Abstract

This paper introduces a novel undercoupled RF resonant sensor platform that enables gaseous phase chemical detection for passive sensor-embedded RF devices and RFIDs. The resonant sensor is implemented with an interdigital chemi-capacitor and a transmission-line inductor, thus only requiring a simple two-layer fabrication process. Its superior sensitivity at RF frequencies arises from the benefits of response amplification near resonance, as well as the shorter wavelength at radio-frequencies. Furthermore, the interdigital capacitor allows polymeric sensing materials to be directly deposited atop, thereby improving fabrication repeatability. The sensor prototypes are loaded with three different polymeric sensing materials – OV225, OV275, and SC201(SXFA) – aiming to detect certain pre-perspiratory transdermal biomarkers including gaseous phase ethanol, methanol, and benzene. Their respective responses are recorded in terms of three distinctive RF parameters – resonant frequency shift (Δf0), response amplitude change (ΔS11), and response delay change (ΔGD11) – from which the sensitivities of these sensors are determined, and their selectivities with respect to the sample gas analytes are subsequently characterized. Finally, evaluation of the response signatures of the polymeric sensing materials to each gas analyte enables future development of sensor array systems that can distinguish desired analytes from unwanted interferents.

Authors

Chen WT; Stewart KME; Mansour RR; Penlidis A

Journal

Sensors and Actuators A Physical, Vol. 230, , pp. 63–73

Publisher

Elsevier

Publication Date

July 1, 2015

DOI

10.1016/j.sna.2015.04.008

ISSN

0924-4247

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