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基于氧化铟锡的传感电极在电位型氧化锆固体电解质气体传感器中的研究

Studies of Indium Tin Oxide-Based Sensing Electrodes in Potentiometric Zirconia Solid Electrolyte Gas Sensors.

作者信息

Dietrich Stefan, Kusnezoff Mihails, Michaelis Alexander

机构信息

Fraunhofer Institute for Ceramic Technologies and Systems IKTS, Winterbergstr. 28, 01277 Dresden, Germany.

Institute of Materials Science, Technische Universität Dresden, 01069 Dresden, Germany.

出版信息

Sensors (Basel). 2021 Mar 27;21(7):2345. doi: 10.3390/s21072345.

Abstract

A zirconia-based potentiometric solid electrolyte gas sensor with internal solid state reference was used to study the response behavior of platinum cermet and indium tin oxide sensing electrodes. Target gases included both oxygen and carbon monoxide in nitrogen-based sample gas mixtures. It was found that with the indium tin oxide sensing electrode, the low-temperature behavior is mainly a result of incomplete equilibration due to contaminations of the electrode surface. On the other hand, some of these contaminant species have been identified as being pivotal for the higher carbon monoxide sensitivity of the indium tin oxide sensing electrode as compared to platinum cermet electrodes.

摘要

使用带有内部固态参比的基于氧化锆的电位型固体电解质气体传感器,研究了铂基金属陶瓷和氧化铟锡传感电极的响应行为。目标气体包括氮基混合样品气中的氧气和一氧化碳。研究发现,对于氧化铟锡传感电极,低温行为主要是由于电极表面污染导致平衡不完全的结果。另一方面,已确定其中一些污染物对氧化铟锡传感电极相对于铂基金属陶瓷电极具有更高的一氧化碳灵敏度起着关键作用。

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