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Updated: Sep 19, 2025

Fabrication of Carbon Nanotube High-Frequency Nanoelectronic Biosensor for Sensing in High Ionic Strength Solutions
Published on: July 22, 2013
Thiourea-enhanced bifunctional covalent organic framework triboelectric nanosensor for high-efficiency detection and
Suyang Wang1, Feijie Wang1, Chenhui Lu2
1Jiangsu Provincial Key Laboratory of Food Advanced Manufacturing Equipment Technology, School of Mechanical Engineering, Jiangnan University, Wuxi 214122, China.
Abstract:
The high toxicity and bioaccumulation of mercury (Hg2+) ions have raised concerns about the dynamic changes of trace Hg2+ ions in the environment. Although conventional Hg2+ ion detection techniques provide highly sensitive and specific results, complex sample pre-treatment damages the native aquatic environment for Hg2+ ions resulting in detection inaccuracy, and the need for a stable external power supply limits real-time detection of Hg2+ ions in the field where power is scarce. The triboelectric nanogenerator (TENG) with no pre-treatment and self-powering provide a sustainable solution for Hg2+ ion detection. In this work, a thiourea-enhanced bifunctional covalent organic framework triboelectric nanosensor (TENS) was proposed. The thiourea moiety not only enhances the electrical output performance of the COF-based TENG to improve the detection sensitivity, but also serves as a specific binding site to recognize Hg2+ ions. The prepared COF-based TENS had the advantages of low detection limit (31.6 pM), wide linear range (10-10 M to 10-4 M), high selectivity, reusability and stability. And it was suitable for the detection of Hg2+ ion concentration in real samples (drinking water, tap water, river water and lake water). The developed detection system was connected in series with LEDs without external power supply to realize LED-indicated Hg2+ ion detection in water samples. This study provided a novel implementation example of a COF-based TENS, which also provided a more convenient and sustainable idea for the detection of heavy metal pollution.
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