The exploration of innovative materials for the chemical detection of organic contaminants remains an ongoing endeavor. Pesticides are a threat to human health because they are present in water bodies, crops, and processed foods. Oxidized porous silicon (OPSi) materials offer a versatile platform for plasmonic architectures by integrating a high surface area with adjustable optical properties. In this study, a Surface-Enhanced Raman Spectroscopy (SERS) substrate was developed by decorating OPSi layers with gold nanoislands through a controlled sputter deposition process. By systematically varying the gold deposition time, we identified clear correlations between the morphology of the nanoislands, localized surface plasmon resonance characteristics, and SERS improvement of the Raman signals. Scanning electron microscopy and UV–visible reflectance spectroscopy revealed a tunable plasmonic response, optimal at a 5 s deposition, where isolated islands maximize the electromagnetic hot-spot density without percolation. The optimized architecture facilitated sensitive, label-free detection of acetamiprid as a model pesticide analyte, achieving a detection limit of less than 0.2 μg/mL (8.9 8 × 10–7 mol/L) with a linear response from 0.2 to 15 μg/mL (8.98 × 10–7 to 6.37 × 10–5 mol/L). The substrate maintained spectral specificity in complex chemical environments, demonstrating that controlled gold deposition on OPSi layers produces a robust and reproducible SERS platform.
In this paper, we propose an efficient and scalable method for creating high‐performance, flexible surface‐enhanced Raman scattering (SERS) substrates using gap‐tunable nanosphere lithography on flexible substrates such as Kapton and PET. We overcome the natural hydrophobic nature of flexible polymer films by depositin...
Merbin John, Umang Chaturvedi, Kamal Lohani et al.· Advanced Physics Research· 0 citations
Gold nanorods (AuNRs) present a promising alternative to silver nanoparticles (AgNPs) for surface-enhanced Raman spectroscopy (SERS) applications due to their improved biocompatibility, chemical stability, and tunable optical properties. However, the cetyltrimethylammonium bromide (CTAB) surfactant typically required f...
Shathar Alobeidat, Claire M. Cullinan, Christa L. Brosseau· Nanotechnology· 0 citations
Hierarchically engineered multifunctional materials that integrate efficient separation and ultrasensitive detection within a scalable architecture remain critically needed for practical environmental health monitoring. Here, we report a scale-like Ag-zeolitic imidazolate framework-67 (Ag-ZIF-67) architecture pseudomor...
Lei Chen, Fu-Yu Chang, Rui Xu et al.· Journal of Hazardous Materia...· 0 citations
Plasmonic platforms that combine chemical remediation with on‐site molecular sensing are highly desirable for monitoring and removing organic microcontaminants in water. Here, we report a one‐pot aqueous synthesis of silver nanospheres and nanoprisms stabilized by poly(vinylpyrrolidone) (PVP), poly(vinyl alcohol) (PV...
Max T. A. Lima, Vitor D. Alves, Claudete F. Pereira et al.· ChemNanoMat· 0 citations
Passive exposure to tobacco smoke can cause severe chronic medical conditions, including respiratory and cardiovascular diseases and cancer. Cotinine, a primary metabolite of nicotine, serves as a reliable biomarker for investigating tobacco exposure and potential health risks. The development of strategies for rapid...
Deepak Kumar, S. Chakraborty, Shailendra Shakya et al.· ACS Applied Nano Materials· 0 citations
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