logo
ResearchBunny Logo
Wide-range and high-accuracy wireless sensor with self-humidity compensation for real-time ammonia monitoring

Engineering and Technology

Wide-range and high-accuracy wireless sensor with self-humidity compensation for real-time ammonia monitoring

W. Lv, J. Yang, et al.

This innovative research showcases a wireless LC chemical sensor that utilizes platinum-doped partially deprotonated-polypyrrole for precise ammonia detection, developed by Wen Lv, Jianhua Yang, Qingda Xu, Jaafar Abdul-Aziz Mehrez, Jia Shi, Wenjing Quan, Hanyu Luo, Min Zeng, Nantao Hu, Tao Wang, Hao Wei, and Zhi Yang. The sensor not only achieves real-time response but also distinguishes between humidity and ammonia, making it a crucial tool for various applications.

00:00
00:00
~3 min • Beginner • English
Abstract
Real-time and accurate biomarker detection is highly desired in point-of-care diagnosis, food freshness monitoring, and hazardous leakage warning. However, achieving such an objective with existing technologies is still challenging. Herein, we demonstrate a wireless inductor-capacitor (LC) chemical sensor based on platinum-doped partially deprotonated-polypyrrole (Pt-PPy+ and PPy0) for real-time and accurate ammonia (NH3) detection. With the chemically wide-range tunability of PPy in conductivity to modulate the impedance, the LC sensor exhibits an up-to-180% improvement in return loss (S11). The Pt-PPy+ and PPy0 shows the p-type semiconductor nature with greatly-manifested adsorption-charge transfer dynamics toward NH3, leading to an unprecedented NH3 sensing range. The S11 and frequency of the Pt-PPy+ and PPy0-based sensor exhibit discriminative response behaviors to humidity and NH3, enabling the without-external-calibration compensation and accurate NH3 detection. A portable system combining the proposed wireless chemical sensor and a handheld instrument is validated, which aids in rationalizing strategies for individuals toward various scenarios.
Publisher
Nature Communications
Published On
Aug 13, 2024
Authors
Wen Lv, Jianhua Yang, Qingda Xu, Jaafar Abdul-Aziz Mehrez, Jia Shi, Wenjing Quan, Hanyu Luo, Min Zeng, Nantao Hu, Tao Wang, Hao Wei, Zhi Yang
Tags
wireless sensor
ammonia detection
platinum-doped polypyrrole
humidity compensation
real-time monitoring
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny