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CO-Sensing Properties of Diode-Type Gas Sensors Employing Anodized Titania and Noble-Metal Electrodes under Hydrogen Atmosphere

机译:二极管型气体传感器的协同感应性能,采用氢气氛采用阳极氧化钛和贵金属电极

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摘要

CO-sensing properties of diode-type sensors employing an anodized TiO2 film and noble-metal (M) electrodes (M/TiO2 sensor, M: Pd, Pt, and Pd-nPt, n: the amount of Pt (wt %) in the Pd-nPt electrode) were investigated at 50–250 °C in dry or wet H2. All the M/TiO2 sensors showed nonlinear I–V characteristics as a diode device in air and N2, but the I–V characteristics of the sensors were actually linear in H2 because of the negligible small height of Schottky barrier at their M/TiO2 interface. The Pd/TiO2 sensor showed no CO response in H2, but the Pt/TiO2 and Pd-nPt/TiO2 sensors responded to CO in H2. Among them, the Pd-64Pt/TiO2 sensor showed the largest CO response at 100 °C in H2. The reason why the mixing of Pd with Pt was effective in improving the CO response is probably because of a decrease in the amount of dissolved hydrogen species, an increase in the amount of dissociatively adsorbed hydrogen species, and an increase in the amount of adsorbed CO species in CO balanced with H2 by the mixing of Pt into Pd. The interference from moisture in the target gas on the CO response should be largely improved from a practical application perspective.
机译:使用阳极氧化TiO2膜和贵金属(M)电极(M / TiO2传感器,M:Pd,Pt和PD-NPT,N:Pt(重量%)的二极管型传感器的协同感应特性在50-250℃下在干燥或湿的H 2下研究PD-NPT电极。所有M / TiO2传感器都显示出非线性I-V特性作为空气中的二极管器件和N2,但传感器的I-V特性在H2中实际是线性的,因为它们在其M / TiO2接口处的肖特基屏障的小高度可忽略不计。 PD / TiO2传感器在H 2中没有CO反应,但PT / TiO2和PD-NPT / TiO2传感器在H2中响应CO。其中,PD-64PT / TiO 2传感器在H2中显示了100℃的最大CO反应。 Pd与PD的混合在改善CO反应方面有效的原因可能是因为溶解的氢物质的量减少,但脱离的氢物质的量增加,以及吸附的CO的量增加通过将Pt的混合与H 2平衡CO的物种。从实际应用角度来看,应大大提高来自靶气体中的水分的干扰。

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