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Updated: Jan 11, 2026

Fast and Accurate Exhaled Breath Ammonia Measurement
Published on: June 11, 2014
High-Performance Flexible Gas Sensors Based on W-VO2/1D-Carbon Composites for Real-Time Ammonia Detection in Breath
Usama Afzal1,2,3, Keping Wang1,2,3, Jiran Liang1,2
1School of Microelectronics, Tianjin University, Tianjin 300072, China.
Abstract:
Flexible resistive-type ammonia (NH3) sensors offer great potential for IoT, healthcare, and environmental monitoring applications due to their cost-effectiveness and precise film morphology fit. However, the limited response and stability of existing gas sensors limit their practicality. Herein, we propose a high-response flexible resistive-type NH3 sensor array based on tungsten-doped vanadium dioxide with 2 at % tungsten (W0.02-V0.98O2) integrated with graphene nanoribbons (GNRs) (W0.02-V0.98O2: GNRs0.4), which has been developed by a mask-assisted drop-casting method. The fabricated sensor exhibits excellent response performance (response rate of 136.1%), fast recovery time (45 s), and excellent flexibility and stability to 20 ppm of NH3 at room temperature (about 25 °C) because the chemical integration enhanced the active sites for adsorption and improved the charge transfer pathways. Furthermore, the sensitivity of the integrated sensor array can be conveniently tuned by adjusting the internal resistance and the smoothness of the sensing film to meet specific application requirements. The sensing device possesses the ability to detect NH3 exposure through the respiratory process, at human physiological temperature, indoor environment, and in open air, making the device one of the stable sensors for practical applications in diverse environments reported to date based on inorganic metal oxides.
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