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Alcohol vapor sensing by cadmium-doped zinc oxide thick films based chemical sensor

机译:基于镉掺杂氧化锌厚膜的化学传感器进行酒精蒸气感测

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Cadmium-doped zinc oxide nanoparticles were derived by simple chemical co-precipitation route using zinc acetate dihydrate and cadmium acetate dihydrate as precursor materials. The thick films were casted from chemical co-precipitation route prepared nanoparticles by economic facile screen printing method. The structural, morphological, optical and electrical properties of the film were characterized relevant to alcohol vapor sensing application by powder XRD, SEM, UV-VIS and DC conductivity techniques. The response and sensitivity of alcohol (ethanol) vapor sensor are obtained from the recovery curves at optimum working temperature range from 20 degrees C to 50 degrees C. The result shows that maximum sensitivity of the sensor is observed at 25 degrees C operating temperature. On varying alcohol vapor concentration, minor variation in resistance has been observed. The sensing mechanism of sensor has been described in terms of physical adsorption and chemical absorption of alcohol vapors on cadmium-doped zinc oxide film surface and inside film lattice network through weak hydrogen bonding, respectively.
机译:以醋酸锌二水合物和醋酸镉二水合物为前驱体材料,通过简单的化学共沉淀途径得到了掺镉的氧化锌纳米颗粒。通过经济简便的丝网印刷方法,通过化学共沉淀途径制备的纳米颗粒流延厚膜。通过粉末XRD,SEM,UV-VIS和DC电导率技术对薄膜的结构,形态,光学和电学性质进行了表征,以检测酒精蒸气。从最佳工作温度范围(20摄氏度到50摄氏度)下的回收率曲线,可以得到酒精(乙醇)蒸汽传感器的响应和灵敏度。结果表明,在25摄氏度的工作温度下,传感器的灵敏度最高。在改变醇蒸气浓度时,已观察到电阻的微小变化。传感器的传感机理是通过弱氢键分别对掺杂镉的氧化锌薄膜表面和内部薄膜晶格网络上的醇蒸气的物理吸附和化学吸收进行描述的。

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