Rapid and ultrasensitive colorimetric detection of Cd2+ ions in water using gold nanoparticles derived from Acacia mangium

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Abdul Aji, Zazza Dillah Hariyanto, M. Alvien Ghifari, I. Putu Mahendra, Reyhan Puji Putranto, Muhammad Yogi Saputra, Hawa Purnama Celala Ary Cane, Agustina Sus Andreani

2026 Inorganic and Nano-Metal Chemistry Article Cited by 0 SDG 14 Quartile

Abstract

Rapid and ultrasensitive monitoring of Cd2+ in aquatic environments remains a critical challenge due to its high toxicity and persistence. This work develops a green, ligand-free colorimetric sensing platform using phytochemical-capped gold nanoparticles synthesized from Acacia mangium leaf extract (AuNPs-Am). The plant-derived polyphenolic compounds act simultaneously as reducing and surface-coordinating agents, enabling one-step nanoparticle synthesis while introducing abundant oxygen-donor binding sites. Upon Cd2+ exposure, coordination interactions at the AuNPs-Am interface induce nanoparticle aggregation, leading to localized surface plasmon resonance modulation and a visible color change. Quantitative analysis based on the absorbance difference (A530–A564) exhibits a linear range of 8.896–889.6 µM (R2 = 0.9953) with detection and quantification limits of 0.09 and 0.30 µM, respectively. The sensor shows strong selectivity against competing metal ions and reliable performance in real water samples with recoveries of 91.40–110.48%. This approach demonstrates a rapid, cost-effective, and environmentally benign strategy for Cd2+ detection. © 2026 Taylor & Francis Group, LLC.

Affiliations

Department of Chemistry, Faculty of Science, Institut Teknologi Sumatera, Lampung Selatan, Indonesia; Research Center for Molecular Chemistry, National Research and Innovation Agency (BRIN), Banten, Tangerang Selatan, Indonesia

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