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Highly selective and sensitive coumarin-triazole-based fluorometric 'turn-off' sensor for detection of Pb2+ ions
Shaily1,2, Ajay Kumar2, Iram Parveen1
1Department of Chemistry, Indian Institute of Technology, Roorkee, India.
Insights
A new triazole-based fluorescent sensor, L5, effectively detects lead ions (Pb2+) with high sensitivity and selectivity. This sensor enables rapid, visual detection using simple test strips, offering a practical solution for lead contamination monitoring.
Area of Science:
- Environmental Chemistry
- Analytical Chemistry
- Materials Science
Background:
- Lead ions (Pb2+) pose significant health risks, causing severe cardiovascular, neurological, developmental, and reproductive disorders, especially in children.
- The development of selective and sensitive sensors for Pb2+ detection is crucial for environmental monitoring and public health.
Purpose of the Study:
- To develop a novel triazole-based fluorescent sensor (L5) for the selective and sensitive detection of Pb2+ ions.
- To evaluate the sensor's performance, including sensitivity, selectivity, binding stoichiometry, and detection limit.
- To create practical, low-cost test strips for on-site Pb2+ detection.
Main Methods:
- Synthesis and characterization of the triazole-based fluorescent sensor L5.
- Spectroscopic analysis (fluorescence quenching) to determine sensor response to Pb2+.
- Preparation and testing of L5-impregnated test strips for visual Pb2+ detection.
Main Results:
- Chemosensor L5 exhibited selective fluorescence quenching upon binding with Pb2+ ions.
- A visible color change from colorless to yellow was observed, facilitating naked-eye detection.
- The sensor demonstrated high sensitivity (detection limit of 1.9 nM) and selectivity for Pb2+ in a phosphate-buffered solution.
- A 1:1 binding stoichiometry and a binding constant of 6.76 × 106 M-1 were determined.
- Low-cost, easy-to-prepare test strips showed practical utility for efficient Pb2+ detection.
Conclusions:
- The developed triazole-based fluorescent sensor L5 is a highly sensitive and selective tool for Pb2+ detection.
- The sensor's ability to induce a visual color change and its incorporation into test strips highlight its potential for practical, on-site environmental monitoring applications.
Abstract:
Exposure to even very low concentrations of Pb2+ is known to cause cardiovascular, neurological, developmental, and reproductive disorders, and affects children in particular more severely. Consequently, much effort has been dedicated to the development of colorimetric and fluorescent sensors that can selectively detect Pb2+ ions. Here, we describe the development of a triazole-based fluorescent sensor L5 for Pb2+ ion detection. The fluorescence intensity of chemosensor L5 was selectively quenched by Pb2+ ions and a clear color change from colorless to yellow could be observed by the naked eye. Chemosensor L5 exhibited high sensitivity and selectivity towards Pb2+ ions in phosphate-buffered solution [20 mM, 1:9 DMSO/H2 O (v/v), pH 8.0] with a 1:1 binding stoichiometry, a detection limit of 1.9 nM and a 6.76 × 106 M-1 binding constant. Additionally, low-cost and easy-to-prepare test strips impregnated with chemosensor L5 were also produced for efficient of Pb2+ detection and proved the practical use of this test.

