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An Arduino-based plasmonic sensor to detect rain and its analysis., , , , , и . M&N, стр. 1-5. IEEE, (2022)Chemical and Biological Applications Based on Plasmonic Optical Fiber Sensors., , , , , и . IEEE Instrum. Meas. Mag., 24 (5): 50-55 (2021)Comparison Between Two Polymer-Based Surface Plasmon Resonance Probes Combined with the Same Bioreceptor for Ochratoxin a Detection., , , , , и . M&N, стр. 1-5. IEEE, (2024)Exploiting Plasmonic Phenomena in Polymer Optical Fibers to Realize a Force Sensor., , и . Sensors, 22 (6): 2391 (2022)Towards V-shaped Plasmonic probes made by exploiting 3D printers and UV-cured optical adhesives for Medical applications., , , , , , , и . MetroInd4.0&IoT, стр. 244-248. IEEE, (2023)3D Printed Flow-Cells for Brillouin-based Tapered Optical Fiber Biosensors., , , , , , , , , и . MetroInd4.0&IoT, стр. 212-216. IEEE, (2023)Safe Robotized Polishing of Plastic Optical Fibers for Plasmonic Sensors., , , , , и . ICINCO, стр. 361-368. SCITEPRESS, (2022)An LSPR Sensor based on a thin slab waveguide of bacterial cellulose., , , , , , и . I2MTC, стр. 1-5. IEEE, (2020)Splitter-Based Sensors Realized via POFs Coupled by a Micro-Trench Filled with a Molecularly Imprinted Polymer., , , , , , , , , и 1 other автор(ы). Sensors, 24 (12): 3928 (июня 2024)Optical Chemical Sensors Based on Waveguides with a Core of Molecularly Imprinted Polymer., , , , , , , , и . SAS, стр. 1-5. IEEE, (2023)