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Investigation of a New Conditioning Method for Improved Performance of non-Nernstian Sensors

机译:改进非能斯特传感器性能的新调节方法的研究

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The article reports on a new conditioning technique referred to as the pulsed discharge technique to improve the performance of non-Nernstian potentiometric sensors. In this method, the sensor is energized through a series of positive and negative pulses between the electrodes with discharge phases in between. The sensor response is extracted from the discharge characteristics, which depend on the type of gas and its concentration. The data is presented as a combination of variables derived form the discharge characteristics. In this study, a 'La_(0.8)Sr_(0.2)CrO_3/YSZ/Pt' sensor configuration was used to investigate this technique. The sensor baseline drift, response, and recovery time was found to improve when the device was subjected to PDT. Further, a 27-fold increase in sensor response was observed per 1000 ppm of NO compared to the device tested in the absence of PDT. The PDT technique is thought to change the interfacial defect concentration by voltage pulses in the solid electrolyte. Subsequent measurement of the relaxation rate after perturbation in the presence of the target gas gives rise to unique discharge characteristics. It is emphasized that this study has to be seen as an initial approach that demonstrates the potential of the novel conditioning principle for improving the non-Nernstian sensor performance.
机译:本文报告了一种新的调节技术,称为脉冲放电技术,以提高非NENNSTIAN电位传感器的性能。在该方法中,传感器通过在电极之间的一系列正和负脉冲通电。传感器响应从放电特性提取,这取决于气体的类型及其浓度。数据被呈现为导出的变量的组合形成放电特性。在本研究中,使用“LA_(0.8)SR_(0.2)CRO_3 / YSZ / PT”传感器配置来研究该技术。当设备经受PDT时,发现传感器基线漂移,响应和恢复时间。此外,与在不存在PDT的情况下测试的装置相比,每1000ppm观察到传感器响应的27倍的增加。 PDT技术被认为通过固体电解质中的电压脉冲改变界面缺陷浓度。在目标气体存在下扰动后随后测量扰动率为独特的放电特性。强调,该研究必须被视为一种初步的方法,证明了新颖的调节原理来改善非NERNSTIAN传感器性能的潜力。

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