Plasmonic Sensors: A New Frontier in Nanotechnology
This reprint covers the theory and fabrication of plasmonic nanostructures, patterned surfaces, and devices for lossy mode resonance (LMR), surface plasmon resonance (SPR), surface-enhanced fluorescence spectroscopy (SEFS), and surface-enhanced Raman scattering (SERS)-based biosensors. The chapters...
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Format: | Electronic Book Chapter |
Language: | English |
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Basel
MDPI - Multidisciplinary Digital Publishing Institute
2023
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Online Access: | DOAB: download the publication DOAB: description of the publication |
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100 | 1 | |a Kumar, Samir |4 edt | |
700 | 1 | |a Seo, Sungkyu |4 edt | |
700 | 1 | |a Kumar, Samir |4 oth | |
700 | 1 | |a Seo, Sungkyu |4 oth | |
245 | 1 | 0 | |a Plasmonic Sensors: A New Frontier in Nanotechnology |
260 | |a Basel |b MDPI - Multidisciplinary Digital Publishing Institute |c 2023 | ||
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506 | 0 | |a Open Access |2 star |f Unrestricted online access | |
520 | |a This reprint covers the theory and fabrication of plasmonic nanostructures, patterned surfaces, and devices for lossy mode resonance (LMR), surface plasmon resonance (SPR), surface-enhanced fluorescence spectroscopy (SEFS), and surface-enhanced Raman scattering (SERS)-based biosensors. The chapters in this reprint cover a range of topics, including the interplay between SPR and lossy mode resonance, fabrication of LSPR substrates using high-throughput techniques, recent advances in various nanostructures, recent developments in the field of nanostructured Ag substrates, and innovative advances in biosensors based on DNA nanotechnology. These chapters provide a comprehensive overview of recent developments in plasmonic biosensors, making this reprint essential reading for researchers working in biosensors and plasmonics. | ||
540 | |a Creative Commons |f https://creativecommons.org/licenses/by/4.0/ |2 cc |4 https://creativecommons.org/licenses/by/4.0/ | ||
546 | |a English | ||
650 | 7 | |a Technology: general issues |2 bicssc | |
653 | |a patterned sapphire substrate | ||
653 | |a localized surface plasmon resonance | ||
653 | |a oblique deposition | ||
653 | |a nanoimprint lithography | ||
653 | |a wafer-scale | ||
653 | |a biosensors | ||
653 | |a DNA nanotechnology | ||
653 | |a DNAzyme | ||
653 | |a plasmonic biosensor | ||
653 | |a aptamer | ||
653 | |a DNA origami | ||
653 | |a flexible SERS substrates | ||
653 | |a coronavirus | ||
653 | |a ultrasensitive detection | ||
653 | |a biomarker | ||
653 | |a rice sample | ||
653 | |a mercury | ||
653 | |a immunochromatographic assay | ||
653 | |a qualitatively | ||
653 | |a strip | ||
653 | |a silver | ||
653 | |a plasmonics | ||
653 | |a sensors | ||
653 | |a surface-enhanced Raman spectroscopy | ||
653 | |a surface-enhanced fluorescence | ||
653 | |a surface-enhanced infrared spectroscopy | ||
653 | |a optical fiber sensor | ||
653 | |a surface plasmon resonance | ||
653 | |a lossy mode resonance | ||
653 | |a indium-tin oxide | ||
653 | |a sensitivity | ||
653 | |a detection accuracy | ||
653 | |a biosensor | ||
653 | |a smart MXene quantum dots | ||
653 | |a biomedical | ||
653 | |a tetrabromobisphenol A | ||
653 | |a surface-enhanced Raman scattering | ||
653 | |a hydrophobic interaction | ||
653 | |a bi-metal chips | ||
653 | |a synergistic coupling | ||
653 | |a glancing angle deposition (GLAD) | ||
653 | |a biomedical detection | ||
653 | |a GLAD substrates | ||
653 | |a GO-SELEX | ||
653 | |a ITC | ||
653 | |a colorimetric sensor | ||
653 | |a pesticide | ||
653 | |a biosensing | ||
653 | |a SERS | ||
653 | |a disease diagnosis | ||
653 | |a biomolecules | ||
653 | |a microorganisms | ||
653 | |a COVID-19 | ||
653 | |a biohazardous molecules | ||
653 | |a cancer | ||
653 | |a n/a | ||
856 | 4 | 0 | |a www.oapen.org |u https://mdpi.com/books/pdfview/book/7154 |7 0 |z DOAB: download the publication |
856 | 4 | 0 | |a www.oapen.org |u https://directory.doabooks.org/handle/20.500.12854/100061 |7 0 |z DOAB: description of the publication |