Performance Evaluation of an Oxygen Sensor as a Function of the Samaria Doped Ceria Film Thickness

Author:

Sanghavi Rahul Pankaj,Nandasiri Manjula,Kuchibhatla Satyanarayana,Nachimuthu Ponnusamy,Engelhard Mark H.,Shutthanandan Vaithiyalingam,Jiang Weilin,Thevuthasan Suntharampillai,Kayani Asghar,Prasad Shalini

Abstract

AbstractThe current demand in the automobile industry is in the control of air-fuel mixture in the combustion engine of automobiles. Oxygen partial pressure can be used as an input parameter for regulating or controlling systems in order to optimize the combustion process. Our goal is to identify and optimize the material system that would potentially function as the active sensing material for such a device that monitors oxygen partial pressure in these systems. We have used thin film samaria doped ceria (SDC) as the sensing material for the sensor operation, exploiting the fact that at high temperatures, oxygen vacancies generated due to samarium doping act as conducting medium for oxygen ions which hop through the vacancies from one side to the other contributing to an electrical signal. We have recently established that 6 atom % Sm doping in ceria films has optimum conductivity. Based on this observation, we have studied the variation in the overall conductivity of 6 atom % samaria doped ceria thin films as a function of thickness in the range of 50 nm to 300 nm at a fixed bias voltage of 2 volts. A direct proportionality in the increase in the overall conductivity is observed with the increase in sensing film thickness. For a range of oxygen pressure values from 0.001 Torr to 100 Torr, a tolerable hysteresis error, good dynamic response and a response time of less than 10 seconds was observed.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Synthesis of Metal Oxide Nanomaterials for Chemical Sensors by Molecular Beam Epitaxy;Metal Oxide Nanomaterials for Chemical Sensors;2012-11-10

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