Stift, Máté Kálmán and Lábadi, Zoltán and Tóth, Éva and Jankovics, Hajnalka and Vonderviszt, Ferenc and Bonyár, Attila and Petrik, Péter (2026) Optimization of gold nanostructure preparation for heavy metal sensing. In: Advanced Fabrication Technologies for Micro/Nano Optics and Photonics XIX. SPIE, Bellingham, p. 1389905. ISBN 9781510697157; 9781510697164
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Abstract
Heavy metal contamination of drinking water is a serious environmental and public health problem worldwide, requiring sensitive and reliable analytical techniques that can be adapted for on-site field use. Gold nanostructure– based electrochemical sensors provide promising solutions because of the chemical stability of gold, its excellent electrochemical properties, and its compatibility with biological functionalization. In this work, the electrochemical deposition of gold nanostructured sensing layers is investigated with a strong focus on in-situ spectroscopic ellipsometry as a real-time quantitative monitoring tool. Electrodeposition parameters were optimized to control the morphology of the gold nanostructures, followed by protein immobilization to enable selective heavy metal binding, especially for nickel. Ellipsometric modeling based on effective medium approaches implemented in the CompleteEASE software allowed continuous tracking of layer formation during electrochemical processing. The sensing concept was demonstrated through cyclic voltammetry measurements in the presence of Ni(II) ions, showing clear and reproducible electrochemical responses.
| Item Type: | Book Section |
|---|---|
| Uncontrolled Keywords: | spectroscopic ellipsometry, electrochemical sensing, gold nanostructures, protein functionalization, nickel detection |
| Subjects: | Q Science / természettudomány > QD Chemistry / kémia |
| SWORD Depositor: | MTMT SWORD |
| Depositing User: | MTMT SWORD |
| Date Deposited: | 30 Mar 2026 07:04 |
| Last Modified: | 30 Mar 2026 07:04 |
| URI: | https://real.mtak.hu/id/eprint/236479 |
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