Influence of pH on Room-Temperature Synthesis of Zinc Oxide Nanoparticles for Flexible Gas Sensor Applications

被引:0
|
作者
Mechai, Fazia [1 ,2 ,3 ]
Al Shboul, Ahmad [1 ]
Bensidhoum, Mohand Outahar [2 ,3 ]
Anabestani, Hossein [4 ]
Ketabi, Mohsen [1 ]
Izquierdo, Ricardo [1 ]
机构
[1] Ecole Technol Super ETS, Dept Elect Engn, 1100 Notre Dame St W, Montreal, PQ H3C 1K3, Canada
[2] Mouloud Mammeri Univ Tizi Ouzou UMMTO, Artificial Vis & Automat Syst LVAAS Lab, Tizi Ouzou 15000, Algeria
[3] Mouloud Mammeri Univ Tizi Ouzou UMMTO, Fac Elect & Comp Engn, Tizi Ouzou 15000, Algeria
[4] McGill Univ, Dept Elect Engn, 845 Sherbrooke St W, Montreal, PQ H3A 0G4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
flexible; gas sensor; room-temperature synthesis; pH effect; printed; zinc oxide; SOL-GEL SYNTHESIS; ZNO NANOWIRES; EXTRACT; NANOSTRUCTURES; MORPHOLOGY; AGENT;
D O I
10.3390/chemosensors12050083
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This research contributes to work on synthesizing zinc oxide nanoparticles (ZnO NPs) at room temperature (RT) and their utilization in flexible gas sensors. RT ZnO NP synthesis with a basicity solution (pH approximate to 13) demonstrates an efficient method for synthesizing well-crystalline ZnO NPs (RT.pH13) comparable to those synthesized by the hydrothermal method (hyd.C). The RT.pH13 achieved a high thermal stability with minimal organic reside impurities (similar to 4.2 wt%), 30-80 nm particle size distribution, and a specific surface area (14 m(2) g(-1)). The synthesized pre- and post-calcinated RT.pH13 NPs were then incorporated into flexible sensors for gas sensing applications at ambient conditions (RT and relative humidity of 30-50%). The pre-calcinated ZnO-based sensor (RT.pH13) demonstrated superior sensitivity to styrene and acetic acid and lower sensitivity to dimethyl-6-octenal. The calcinated ZnO-based sensor (RT.pH13.C) exhibited lower sensitivity to styrene and acetic acid, but heightened sensitivity to benzene, acetone, and ethanol. This suggests a correlation between sensitivity and structural transformations following calcination. The investigation of the sensing mechanisms highlighted the role of surface properties in the sensors' affinity for specific gas molecules and temperature and humidity variations. The study further explored the sensors' mechanical flexibility, which is crucial for flexible Internet of Things (IoT) applications.
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页数:23
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