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Nanostructured SnO2–ZnO composite gas sensors for selective detection of carbon monoxide

机译:用于选择性检测一氧化碳的纳米结构SnO2-ZnO复合气体传感器

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摘要

A series of SnO2–ZnO composite nanostructured (thin) films with different amounts of SnO2 (from 0 to 50 wt %) was prepared and deposited on a miniaturized porous alumina transducer using the sol–gel and dip coating method. The transducer, developed by our research group, contains Au interdigital electrodes on one side and a Pt heater on the other side. The sensing films were characterized using SEM and AFM techniques. Highly toxic and flammable gases (CO, CO2, CH4, and C3H8) were tested under lab conditions (carrier gas was dry air) using a special gas sensing cell developed by our research group. The gas concentrations varied between 5 and 2000 ppm and the optimum working temperatures were in the range of 210–300 °C. It was found that the sensing performance was influenced by the amount of oxide components present in the composite material. Improved sensing performance was achieved for the ZnO (98 wt %)–SnO2 (2 wt %) composite as compared to the sensors containing only the pristine oxides. The sensor response, cross-response and recovery characteristics of the analyzed materials are reported. The high sensitivity (R S = 1.21) to low amounts of CO (5 ppm) was reported for the sensor containing a composite sensitive film with ZnO (98 wt %)–SnO2 (2 wt %). This sensor response to CO was five times higher as compared to its response to CO2, CH4, and C3H8, thus the sensor is considered to be selective for CO under these test conditions.
机译:制备了一系列具有不同SnO2含量(0至50 wt%)的SnO2-ZnO复合纳米结构(薄膜)薄膜,并使用溶胶-凝胶和浸涂法将其沉积在小型多孔氧化铝传感器上。由我们的研究小组开发的换能器在一侧包含Au叉指电极,在另一侧包含Pt加热器。使用SEM和AFM技术对传感膜进行表征。使用由我们研究小组开发的特殊气体传感电池,在实验室条件下(载气为干燥空气)对高毒性和可燃气体(CO,CO2,CH4和C3H8)进行了测试。气体浓度在5至2000 ppm之间变化,最佳工作温度为210–300°C。已经发现,感测性能受复合材料中存在的氧化物组分的量影响。与仅包含原始氧化物的传感器相比,ZnO(98 wt%)– SnO2(2 wt%)复合材料的传感性能得到了改善。报告了分析材料的传感器响应,交叉响应和恢复特性。据报道,该传感器包含具有ZnO(98 wt%)– SnO2(2 wt%)的复合敏感膜的传感器对少量CO(5 ppm)具有高灵敏度(R S = 1.21)。该传感器对CO的响应是其对CO2,CH4和C3H8的响应的五倍,因此,在这些测试条件下,该传感器被认为对CO具有选择性。

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