Humidity-Activated Ammonia Sensor Based on Carboxylic Functionalized Cross-Linked Hydrogel
- PMID: 39771889
- PMCID: PMC11679150
- DOI: 10.3390/s24248154
Humidity-Activated Ammonia Sensor Based on Carboxylic Functionalized Cross-Linked Hydrogel
Abstract
Owing to its extensive use and intrinsic toxicity, NH3 detection is very crucial. Moisture can cause significant interference in the performance of sensors, and detecting NH3 in high humidity is still a challenge. In this work, a humidity-activated NH3 sensor was prepared by urocanic acid (URA) modifying poly (ethylene glycol) diacrylate (PEGDA) via a thiol-ene click cross-linking reaction. The optimized sensor achieved a response of 70% to 50 ppm NH3 at 80% RH, with a response time of 105.6 s and a recovery time of 346.8 s. The sensor was improved for response and recovery speed. In addition, the prepared sensor showed excellent selectivity to NH3 in high-humidity environments, making it suitable for use in some areas with high humidity all the year round or in high-humidity areas such as the detection of respiratory gas. A detailed investigation of the humidity-activated NH3-sensing mechanism was conducted using complex impedance plot (CIP) measurements.
Keywords: fast recovery; humidity-activated ammonia sensor; urocanic acid.
Conflict of interest statement
The authors declare no conflicts of interest.
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References
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Grants and funding
- 62171195/National Natural Science Foundation of China
- 62271227/National Natural Science Foundation of China
- 62301583/National Natural Science Foundation of China
- 20240402074GH/the Project of Science and Technology Development Plan of Jilin Province
- 2022T150252/the China Postdoctoral Science Foundation
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