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Electrochemical deposition of gold on indium zirconate (InZrOx with In/Zr atomic ratio 1.0) for high temperature automobile exhaust gas sensors

机译:金在高温汽车废气传感器上的锆铟铟(In / Zr原子比为1.0的InZrOx)上的化学沉积

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摘要

Automobile exhaust gas emissions are causing serious damage to urban air quality in and around major cities of the world, which demands continuous monitoring of exhaust emissions. The chief components of automobile exhaust include carbon monoxide (CO), nitrogen oxides (NOx), and hydrocarbons. Indium zirconate (InZrOx) and gold/indium zirconate (Au/InZrOx) composite nanopowders are believed to be interesting materials to detect these substances. To this end, characterization and gas sensing properties of InZrOx and Au/InZrOx composite nanopowders are discussed. InZrOx nanoparticles with In/Zr atomic ratio of 1.00 (+/- 0.05) are synthesized via pH-controlled co-precipitation of In and Zr salts in aqueous ammonia. Gold (Au) nanoparticles are subsequently deposited on InZrOx using an in situ sacrificial Au electrolysis procedure. The products are characterized by scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS). The gas sensing performance of Au/InZrOx composite nanopowder is studied by depositing a thick powder film on interdigitated electrode structures patterned on SiC substrate to facilitate high temperature operation. The resistivity of the Au/InZrOx layer is the sensor signal, and the sensors could be operated at 500-600 A degrees C, which is a suitable temperature range for engine exhaust measurements. The control sensing measurements reveal that Au/InZrOx composite nanopowder exhibits higher response towards 2-20 % O-2 gas as compared to pristine InZrOx nanoparticles. Further studies show that when applied to exhaust gases such as CO and nitric oxide (NO), the response of Au/InZrOx sensors is significantly higher towards NO in this temperature range. Thus, sensor performance characteristics of Au/InZrOx composite nanopowder are promising in terms of their applications in automobile exhaust emission control.
机译:汽车废气排放正在严重损害世界各主要城市及其周围城市的空气质量,这需要对废气排放进行连续监测。汽车尾气的主要成分包括一氧化碳(CO),氮氧化物(NOx)和碳氢化合物。锆铟(InZrOx)和金/锆铟(Au / InZrOx)复合纳米粉被认为是检测这些物质的有趣材料。为此,讨论了InZrOx和Au / InZrOx复合纳米粉体的表征和气敏特性。 In / Zr原子比为1.00(+/- 0.05)的InZrOx纳米粒子是通过在氨水中通过pH控制的In和Zr盐的共沉淀而合成的。随后使用原位牺牲Au电解程序将金(Au)纳米粒子沉积在InZrOx上。产品通过扫描电子显微镜(SEM)和X射线光电子能谱(XPS)进行表征。通过在SiC衬底上构图的叉指电极结构上沉积厚的粉末膜以促进高温操作,研究了Au / InZrOx复合纳米粉的气敏性能。 Au / InZrOx层的电阻率是传感器信号,传感器可以在500-600 A摄氏度下运行,这是适合发动机排气测量的温度范围。对照感测结果表明,与原始InZrOx纳米颗粒相比,Au / InZrOx复合纳米粉体对2-20%的O-2气体表现出更高的响应。进一步的研究表明,当应用于诸如CO和一氧化氮(NO)的废气时,Au / InZrOx传感器在此温度范围内对NO的响应明显更高。因此,就其在汽车尾气排放控制中的应用而言,Au / InZrOx复合纳米粉的传感器性能特征是有希望的。

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