Abstract
Traditional methods for detecting heavy metals are often limited by specialized operator skills, extended analysis durations, and expensive equipment. This study aims to develop a portable electrochemical sensor for the simultaneous quantification of Pb²⁺ and Cu²⁺ in aqueous environments. The Polyamide-amine dendrimers/Nickel Metal-Organic Frameworks (PAMAM/Ni-MOFs) nanocomposite was synthesized and utilized as a sensing platform by modifying a glassy carbon electrode. The developed electrochemical sensor enables simultaneous detection through SWASV, demonstrating a linear response within the range of 1–100 μg/L and achieving ultralow detection limits (Pb²⁺: 1.21 μg/L; Cu²⁺: 0.77 μg/L), which are below the World Health Organization's recommended thresholds for drinking water (10 μg/L Pb²⁺; 2000 μg/L Cu²⁺). The platform exhibits remarkable specificity (ΔI < 17 % against tenfold interferents), repeatability (five electrodes, RSD < 3.56 %), and operational stability (over 95 % signal retention for 30 days), thereby meeting stringent criteria for on-site water quality assessment. This study presents a field-deployable electrochemical sensor based on PAMAM/Ni-MOFs nanocomposites, capable of concurrent detection of Pb²⁺ and Cu²⁺ within seven minutes. This system addresses the limitations of conventional methods through its compact design, cost-effectiveness, and ease of operation, positioning it as a significant advancement for environmental monitoring and industrial wastewater management.
| Original language | English |
|---|---|
| Article number | 138352 |
| Journal | Sensors and Actuators B: Chemical |
| Volume | 444 |
| DOIs | |
| State | Published - 1 Dec 2025 |
Keywords
- Copper
- Electrochemical sensors
- Heavy metal ions
- Lead
- Ni-MOFs
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