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Gas-sensing properties of sprayed films of (CdO)x(ZnO)1-x mixed oxide

机译:(CdO)x(ZnO)1-x复合氧化物喷涂膜的气敏特性

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摘要

A novel NO2 sensor based on (CdO)x(ZnO)1-x mixed-oxide thin films deposited by the spray pyrolysis technique is developed. The sensor response to 3-ppm NO2 is studied in the range 50°C-350°C for three different film compositions. The device is also tested for other harmful gases, such as CO (300 ppm) and CH4 (3000 ppm). The sensor response to these reducing gases is different at different temperatures varying from the response typical for the p-type semiconductor to that typical for the n-type semiconductor. Satisfactory response to NO2 and dynamic behavior at 230°C, as well as low resistivity, are observed for the mixed-oxide film with 30% Cd. The response to interfering gas is poor at working temperature (230°C). On the basis of this study, a possible sensing mechanism is proposed.
机译:开发了一种基于(CdO)x(ZnO)1-x混合氧化物薄膜的新型NO2传感器,该薄膜通过喷雾热解技术沉积。对于三种不同的薄膜成分,在50°C-350°C范围内研究了传感器对3-ppm NO2的响应。还对该设备进行了其他有害气体测试,例如CO(300 ppm)和CH4(3000 ppm)。传感器对这些还原气体的响应在不同的温度下有所不同,从典型的p型半导体响应到典型的n型半导体响应都不同。对于含30%Cd的混合氧化物薄膜,观察到对NO2的令人满意的响应和在230°C的动态行为以及低电阻率。在工作温度(230°C)下,对干扰气体的响应很差。在此研究的基础上,提出了一种可能的传感机制。

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