High-Entropy Oxide Semiconductor-Based MEMS Sensor Array: Trace Formaldehyde Recognition in Mixed Gases
Yu Bing, Hongtao Jiang, W Li, Zhao Song, Tingting Zhou, Tong Zhang
Jilin University State Key Laboratory on Integrated Optoelectronics
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摘要与影响
This work presents a novel design strategy for a micro-electro-mechanical system (MEMS) formaldehyde (CH2O) sensor based on high-entropy metal oxide semiconductors (HE-MOSs). To address the challenge of trace CH2O detection in complex indoor gas mixtures, the intrinsic high defect density of the HE-MOSs is exploited via a variable temperature (VT) mode and sensor array design, achieving an ultra-low detection of 355 ppt. With the optimized VT parameters, the device achieves 100% accurate identification of trace CH2O (200 ppb) in high-concentration ethanol via machine learning algorithms. These designs hold significant potential for reliable, intelligent MEMS gas sensors deployed in complex environments.
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工程Gas Sensing Nanomaterials and Sensors
Advanced Chemical Sensor Technologies · Transition Metal Oxide Nanomaterials
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