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Updated: Aug 19, 2026

Rapid Nanoprobe Signal Enhancement by In Situ Gold Nanoparticle Synthesis
Published on: March 7, 2018
Easy-to-manufacture confined silver nanoparticles via electrochemical synthesis enabling colorimetric peroxide
Dhony Hermanto1, Nurul Ismillayli1, Rochmad Krissanjaya2
1Department of Chemistry, Faculty of Mathematics and Natural Sciences, University of Mataram, Mataram, West Nusa Tenggara, 83125, Indonesia.
Abstract:
Solid-state colorimetric sensors are often constrained by nanoparticle instability and matrix interference in complex foods. Here, we report an easy-to-manufacture chitosan-κ-carrageenan-silver nanocomposite membrane fabricated through electrochemical in situ AgNP formation without an external reducing agent. The polyelectrolyte network confined AgNPs and enabled an H2O2-responsive color change through oxidation and partial dissolution of metallic Ag. After H2O2 exposure, TEM revealed residual Ag-containing domains of 4-16 nm, while XRD, SEM-EDS, AAS, and UV-Vis supported partial depletion of the plasmonically active Ag phase. RGB analysis showed a linear response from 1 to 100 μM H2O2, a 1.17 μM detection limit, and a 10 min response time. The membrane showed limited interference from several nonoxidizing food constituents but some cross-reactivity toward redox-active species. Refrigerated storage provided the best short-term stability. Recoveries in energy drink, tofu, and milk were 96.24-104.76%, with close agreement between RGB and HPLC.

