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基于(La,Sr)(Cr,Fe)O 钙钛矿敏感电极的快速响应、高灵敏度和选择性混合电位 H 传感器。

Fast Response, Highly Sensitive and Selective Mixed-Potential H Sensor Based on (La, Sr)(Cr, Fe)O Perovskite Sensing Electrode.

机构信息

State Key Laboratory of Fire Science, Department of Safety Science and Engineering, University of Science and Technology of China , Hefei, Anhui 230026, P.R. China.

School of Engineering and Materials Science, Queen Mary University of London , Mile End Road, London E1 4NS, United Kingdom.

出版信息

ACS Appl Mater Interfaces. 2017 May 24;9(20):17218-17225. doi: 10.1021/acsami.7b01901. Epub 2017 May 15.

Abstract

A planar mixed-potential type sensor consisting of LaSrCrFeO sensing electrode, yttria-stabilized zirconia solid electrolyte, and Pt reference electrode was developed for H detection. The sensor showed high and repeatable response with a value of -143.6 mV for 1000 ppm of H at 450 °C. The sensor response varied linearly or logarithmically with the hydrogen concentration in the range of 20-100 ppm and 100-1000 ppm of H, respectively. The response/recovery time generally decreased with increasing concentration and temperature, and reached almost steady above 300 ppm of H. Response time as short as 4 s and recovery time of 24 s were attained at 450 °C for 500 ppm. The sensor exhibited excellent selectivity to hydrogen against interference of CH, CH, CO, NO, and NH. The mixed-potential mechanism was assessed by electrochemical measurements, and the sensing behavior was discussed in relation to the reaction kinetics. The excellent H sensing performance for concentrations above 100 ppm is ascribed to the high electrocatalytic activity of the perovskite electrode to H oxidation. The inferior performance for lower H concentrations may be related with slow gas diffusion in the electrode.

摘要

一种平面混合电位型传感器,由 LaSrCrFeO 敏感电极、氧化钇稳定氧化锆固体电解质和 Pt 参比电极组成,用于 H 检测。该传感器在 450°C 下对 1000ppm 的 H 表现出高且可重复的响应,响应值为-143.6mV。传感器响应随 H 浓度在 20-100ppm 和 100-1000ppm 范围内分别呈线性或对数变化。响应/恢复时间通常随浓度和温度的增加而减小,在 H 浓度高于 300ppm 时几乎达到稳定。在 450°C 下,500ppm 的 H 时达到了 4s 的短响应时间和 24s 的恢复时间。该传感器对 H 的干扰具有优异的选择性,如 CH、CH、CO、NO 和 NH。通过电化学测量评估了混合电位机制,并讨论了传感行为与反应动力学的关系。对于浓度高于 100ppm 的 H,传感器具有优异的 H 传感性能,这归因于钙钛矿电极对 H 氧化的高电催化活性。对于较低 H 浓度的较差性能可能与电极中气体扩散缓慢有关。

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