Publication | Closed Access
Facile Synthesis of Hierarchical CuO Microspheres and their Gas Sensing Properties for NOx at Room Temperature
11
Citations
50
References
2015
Year
EngineeringNanoporous MaterialFacile SynthesisGas SensorChemistryChemical EngineeringNanoscale ChemistryNanosensorChemical SensorPorous SensorFacile Reflux MethodMaterials ScienceNanotechnologyGas DetectionElectrochemical Gas SensorRoom TemperatureNanomaterialsHierarchical Cuo MicrospheresUnique Hierarchical Structure
In this research, hierarchical CuO microspheres have been successfully synthesised by a facile reflux method. Scanning electron microscopy results clearly revealed that the hierarchical CuO microspheres were composed of two-dimensional nanosheets. The morphology of the prepared products could be tailored by changing the precursor concentration. The CuO-2 sample shows a higher NOx gas sensing performance with a low detection limit of 0.97 ppm, high gas response of 64.93 %, and short response time of 5.33 s to 97.0 ppm NOx at room temperature. The CuO-2 sensor also presents good selectivity and stability. The significantly improved gas response was concluded to be related to the well aligned microstructures and the improved conductivity of the CuO-2 sample. The unique hierarchical structure allows effective and rapid gas diffusion towards the sensing surfaces. In addition, the sensing mechanism based on the hierarchical CuO microspheres is discussed.
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