异质结
材料科学
腔磁控管
光电子学
溅射沉积
响应时间
检出限
无线
二氧化氮
降级(电信)
微量气体
工作(物理)
纳米技术
极限(数学)
电子工程
跟踪(心理语言学)
电气工程
制作
薄膜
作者
Weixiang Gao,Yuxuan Liu,Xueting Chang,O. Ola,Zheng Wang,Haoyang Li,Jian Li,Yi Jiang,Dongsheng Wang,Shibin Sun
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2026-03-25
卷期号:11 (4): 3429-3441
被引量:3
标识
DOI:10.1021/acssensors.6c00076
摘要
The detection of trace nitrogen dioxide (NO 2 ) in port atmospheres is crucial for protecting occupational health and maintaining air quality in coastal cities. Nonetheless, the reliable monitoring of NO 2 remains a challenge in complex environments featuring high humidity, diverse gas compositions, and dynamically fluctuating concentrations, which impose substantial interference. Here, the NO 2 sensors based on the CeO 2 /ZnO/WO 3 (CZWT) heterostructure films were fabricated via the template-assisted magnetron sputtering. The optimal device exhibited outstanding NO 2 sensing performance at 280 °C with high response (81.69 to 50 ppm NO 2 ), rapid response/recovery rate (25/10 s), ultralow detection limit (10 ppb), ideal selectivity, and excellent long-term stability (90 days). Further investigations suggested that the exceptional hydrophobicity of the CZWT heterostructure film and the dynamic Ce 3+ /Ce 4+ redox cycle endowed the sensors with humidity-tolerant response properties. In parallel, a wireless gas-detection device was developed to achieve the monitoring of NO 2 in humid environments. This work demonstrates an effective approach for designing humidity-independent MOS gas sensors.
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