Related Experiment Video
Updated: Jan 10, 2026

Development of an Electrochemical DNA Biosensor to Detect a Foodborne Pathogen
Published on: June 3, 2018
Electrochemical Sensing of Lead Ions Using Ionophore-Modified Raspberry-like Fe3O4-Au Nanostructures via Differential
Giang Huong Dau1, Tin Phan Nguy2, Tram Thi Ngoc Do2
1Convergence Technology Division, Vietnam-Korea Institute of Science and Technology, Hoa Lac High-Tech Park, Km29 Thang Long Boulevard, Hanoi 100000, Vietnam.
None:
This study presents the design and application of an electrochemical sensor for selective detection of lead ions (Pb2+) based on ionophore-modified raspberry-like Fe3O4-Au nanostructures. The material was engineered with a magnetic Fe3O4 core, coated with polyethyleneimine (PEI) to facilitate nucleation, and subsequently decorated with Au nanoparticles, providing a raspberry-like (Fe3O4@PEI@AuNPs) nanostructure with high surface area and excellent electrochemical conductivity. Surface functionalization with Lead Ionophore IV (ionophore thiol) introduced Pb2+-selective binding sites, whose presence and structural evolution were verified by TEM and Raman spectroscopy. The Fe3O4 core endowed strong magnetic properties, enabling facile manipulation and immobilization onto screen-printed carbon electrodes (SPCEs) via physical adsorption, while the Au nanoparticles enhanced electron transfer, supplied thiol-binding sites for stable ionophore anchoring, and increased the effective electroactive surface area. Operational conditions were systematically optimized, with acetate buffer (HAc/NaAc, pH 5.7) and chronoamperometric preconcentration (CA) at -1.0 V for 175 s identified as optimal for differential pulse voltammetry (DPV) measurements. Under these conditions, the sensor exhibited a linear response toward Pb2+ from 0.025 mM to 2.00 mM with superior sensitivity and reproducibility compared to conventional AuNP-modified SPCEs. Furthermore, the ionophore-modified Fe3O4-Au nanostructure-based sensor demonstrated outstanding selectivity for Pb2+ over competing heavy metal ions (Cd2+, Hg2+, Cr3+), owing to the specific coordination interaction of Lead Ionophore IV with target ions. These findings highlight the potential of raspberry-like Fe3O4@PEI@AuNP nanostructures as a robust and efficient electrochemical platform for the sensitive and selective detection of toxic heavy metal ions.
Related Concept Videos
Voltammetric Techniques: Pulse Voltammetry
Controlled-Potential Coulometry: Electrolytic Methods
The chosen potential...
Voltammetric Techniques: Linear-Scan (E vs Time)

