Enabling a new method of dynamic field-effect gas sensor operation through lithium-doped tungsten oxide
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Published:2019-08-02
Issue:2
Volume:8
Page:261-267
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ISSN:2194-878X
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Container-title:Journal of Sensors and Sensor Systems
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language:en
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Short-container-title:J. Sens. Sens. Syst.
Author:
Rodner MariusORCID, Bastuck Manuel, Schütze Andreas, Andersson Mike, Huotari Joni, Puustinen Jarkko, Lappalainen Jyrki, Sauerwald Tilman
Abstract
Abstract. To fulfil today's requirements, gas sensors have to become more and more sensitive and selective. Temperature-cycled operation has long been used to enhance the sensitivity and selectivity of metal-oxide semiconductor gas sensors and, more recently, silicon-carbide-based, gas-sensitive field-effect transistors (SiC-FETs). In this work, we present a novel method to significantly enhance the effect of gate bias on a SiC-FET's response, giving rise to new possibilities for static and transient signal generation and, thus, increased sensitivity and selectivity. A tungsten trioxide (WO3) layer is deposited via pulsed laser deposition as an oxide layer beneath a porous iridium gate, and is doped with 0.1 AT % of lithium cations. Tests with ammonia as a well-characterized model gas show a relaxation effect with a time constant between 20 and 30 s after a gate bias step as well as significantly increased response and sensitivity at +2 V compared to 0 V. We propose an electric field-mediated change in oxygen surface coverage as the cause of this novel effect.
Publisher
Copernicus GmbH
Subject
Electrical and Electronic Engineering,Instrumentation
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