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Highly sensitive mixed-potential type ethanol sensors based on stabilized zirconia and ZnNb2O6 sensing electrode

机译:基于稳定氧化锆和ZnNB2O6传感电极的高敏感的混合电位型乙醇传感器

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摘要

A mixed-potential type stabilized zirconia (YSZ)-based gas sensor using columbite type composite oxide sensing electrode was developed and fabricated, aiming at sensitive detection of ethanol. Among the different oxide sensing electrodes (SEs) developed, the sensor attached with ZnNb _(2) O _(6) -SE was found to achieve the largest sensitivity to ethanol at 625 °C. Furthermore, the result of the effect of sintering temperature on sensing characteristic showed that the sensor utilizing ZnNb _(2) O _(6) -SE sintered at 1000 °C displayed the highest response of ?175 mV to 100 ppm ethanol and a low detection limit of 0.5 ppm at 625 °C. Δ V of the present sensor exhibited a segmentally linear relationship to the logarithm of ethanol concentration in the ranges of 0.5–5 ppm and 5–200 ppm, for which the sensitivities were ?29 and ?112 mV decade ~(?1) , respectively. Moreover, the fabricated device also displayed fast response and recovery times, good repeatability, small fluctuation during 30 days continuous high temperature of 625 °C measured periods, and acceptable selectivity to some other interfering gases. Additionally, the sensing mechanism involving mixed potential was further demonstrated by polarization curves.
机译:使用Columbite型复合氧化物传感电极的混合电位型稳定的氧化锆(YSZ)基于气体传感器,并制造,旨在敏感地检测乙醇。在开发的不同氧化物传感电极(SES)中,发现用ZnNB _(2)O _(6)-SSE的传感器在625℃下实现对乙醇的最大敏感性。此外,烧结温度对感测特性的影响结果表明,使用ZnNB _(2)O _(6)-se的传感器在1000℃下烧结α175mV至100ppm乙醇的最高响应和低检测限为0.5ppm,在625℃下。本发明传感器的δv与0.5-5ppm的范围和5-200ppm的乙醇浓度的对数进行了分段性的线性关系,敏感性分别为敏感性为29和?112 mV十年〜(?1) 。此外,制造的装置还显示出快速的响应和恢复时间,良好的重复性,在30天内连续高温的625°C测量时段的较小波动,以及对一些其他干扰气体的可接受的选择性。另外,通过极化曲线进一步证明了涉及混合电位的传感机制。

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