Journal ArticleDOI
Surface Plasmon Resonance for Biosensing: A Mini-Review
TLDR
A variety of configurations and formats have been devised to exploit the phenomenon of surface plasmon on metal dielectric interfaces for sensing a variety of significant analytes, such as pesticides and explosives, pathogens and toxins, and diseased tissue as discussed by the authors.Abstract:
A variety of configurations and formats have been devised to exploit the phenomenon of surface plasmon on metal dielectric interfaces for sensing a variety of significant analytes, such as pesticides and explosives, pathogens and toxins, and diseased tissue. Researchers continue to aim at detecting lower concentrations in smaller volumes of samples in real time. A new research field, called nanoplasmnonics, has emerged in this regard.read more
Citations
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Book ChapterDOI
Glancing Angle Deposition for Biosensing Applications
TL;DR: In this paper, a short overview about the preparation of STFs by oblique angle deposition and GLAD is given, and the STF nanostructures are further functionalized to come as close as possible to this scientific intent.
Journal ArticleDOI
Effect of chemical potential on Dyakonov-Tamm waves guided by a graphene-coated structurally chiral medium
Francesco Chiadini,Antonio Scaglione,Vincenzo Fiumara,Mikhail V. Shuba,Mikhail V. Shuba,Akhlesh Lakhtakia +5 more
Journal ArticleDOI
PDMS-based Optical Leaky Waveguide Coated with Self-assemble Au-NPs for Bio-analytical Detections
TL;DR: In this article, a de-molded PDMS optical waveguide is then modified with PDDA molecules and coated with a layer of 13 nm Au-NPs for inducing the localized surface plasmon resonance (LSPR) effect.
Proceedings ArticleDOI
Surface-plasmonic-polaritonic sensor using a dielectric columnar thin film
TL;DR: In this paper, it was shown that the angle between the morphologically signicant plane of the CTF and the cross-sectional pla ne of the prism should not exceed about 45 for high sensitivity.
Journal ArticleDOI
Multiple surface-plasmon-polariton waves guided by a chiral sculptured thin film grown on a metallic grating
TL;DR: In this paper, a grating-coupled excitation of multiple surface-plasmon-polariton (SPP) waves guided by the periodically corrugated interface of a metal and a chiral sculptured thin film (STF) was investigated.
References
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Journal ArticleDOI
Localized Surface Plasmon Resonance Spectroscopy and Sensing
TL;DR: This review describes recent fundamental spectroscopic studies that reveal key relationships governing the LSPR spectral location and its sensitivity to the local environment, including nanoparticle shape and size and introduces a new form of L SPR spectroscopy, involving the coupling between nanoparticle plasmon resonances and adsorbate molecular resonances.
Journal ArticleDOI
Surface plasmon resonance sensors: review
TL;DR: Main application areas are outlined and examples of applications of SPR sensor technology are presented and future prospects of SPR technology are discussed.
Book
Surface Plasmons on Smooth and Rough Surfaces and on Gratings
TL;DR: In this article, surface plasmons on smooth surfaces were used for light scattering at rough surfaces without an ATR device, and surface plasmon on gratings for enhanced roughness.
Journal ArticleDOI
Surface raman spectroelectrochemistry: Part I. Heterocyclic, aromatic, and aliphatic amines adsorbed on the anodized silver electrode
TL;DR: In this article, the authors verified the remarkable sensitivity of Raman spectroscopy for the study of adsorbed pyridine on a silver surface, and extended its applicability to other nitrogen heterocycles and amines.
Journal ArticleDOI
Notizen: Radiative Decay of Non Radiative Surface Plasmons Excited by Light
E. Kretschmann,H. Raether +1 more
TL;DR: In this paper, it has been shown that the non-radiative mode excited by light can also radiate under certain conditions if they are excited by electrons (grazing incidence of electrons on a rough surface or at normal incidence on a grating).
Related Papers (5)
Notizen: Radiative Decay of Non Radiative Surface Plasmons Excited by Light
E. Kretschmann,H. Raether +1 more