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Carbon monoxide detection at low temperatures by semiconductor sensor with nanostructured Au-doped CoOOH films

机译:半导体传感器与纳米结构的金掺杂CoOOH薄膜在低温下检测一氧化碳

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A series of cobalt oxyhydroxide (CoOOH) nano-films (250-450 nm thick) containing a small percentage of Au by mass were prepared from the component oxides through special precipitation and were sintered on the sensor substrate between Pt electrodes at 300 ℃ for 2 h. The sensor response to CO and other combustion by-product pollutants typical for early stages of fire, defined as R_g and R_a, where R_g and R_a denote the sensor electrical resistance in the sample gas and in air, respectively, was strongly promoted by addition of a small amount of Au to the CoOOH nanostructures. The results revealed that the sensors attached with Au-doped CoOOH sensing electrode (SE) have good sensitivity to CO in the temperature range of 60-110 ℃ with the maximum CO response near 80 ℃. Cross-sensitivity investigation of these sensors to various gases has shown that the sensitivity of the nanostructured Au-loaded CoOOH-SE to CO is the highest among other gases. As the amount of Au loaded increased up to 0.5%, the device was found to be more sensitive to CO, whilst the addition of 1 mass% Au substantially degraded the sensing properties of the device. The promoting effects of Au were discussed based on the behaviour of electrical resistance of the Au-loaded sensors. The results of this work may be applicable to further development of carbon monoxide sensors for fire detection at its earlier stages.
机译:用特殊的沉淀方法,由组分氧化物制备一系列含有少量质量百分比金的氢氧化钴(CoOOH)纳米膜(250-450 nm厚),并在300℃下于Pt电极之间的传感器基板上烧结2℃。 H。传感器对二氧化碳和其他燃烧副产物污染物的响应在火灾早期通常被定义为R_g和R_a,其中R_g和R_a分别表示样品气体和空气中的传感器电阻,通过添加以下元素可以大大增强CoOOH纳米结构中含有少量Au。结果表明,在60-110℃温度范围内,附有Au掺杂CoOOH感测电极(SE)的传感器对CO具有良好的灵敏度,在80℃附近具有最大的CO反应。对这些传感器对各种气体的交叉敏感性研究表明,在其他气体中,纳米金负载的CoOOH-SE对CO的敏感性最高。随着Au的负载量增加到0.5%,发现该器件对CO更加敏感,而添加1质量%的Au则大大降低了器件的传感性能。根据载金传感器的电阻行为,讨论了金的促进作用。这项工作的结果可能适用于在早期阶段进一步开发用于火灾探测的一氧化碳传感器。

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