By Katrin Kneipp, Martin Moskovits, Harald Kneipp

Virtually 30 years after the 1st reviews on surface-enhanced Raman signs, the phenomenon of surface-enhanced Raman scattering (SERS) is now good proven. but, explaining the enhancement of a spectroscopic sign via fouteen orders of value maintains to draw the eye of physicists and chemists alike. And, even as and quickly turning out to be, SERS is turning into a really worthy spectroscopic device with interesting purposes in lots of fields. SERS won specific curiosity after single-molecule Raman spectroscopy have been validated. This bookl summarizes and discusses current theoretical methods that designate the phenomenon of SERS and stories on new and fascinating experiments and purposes of the attention-grabbing spectroscopic impression.

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Extra info for Surface Enhanced Raman Scattering: Physics and Applications

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61, 3789 (1974) 14 18 Martin Moskovits Index enhancement electromagnetic, 2 hot spot, 7 inhomogeneous electromagnetic field, 12 models electromagnetic, 2 quasistatic approximation, 11 radiating dipole antenna, 13 nanostructures aggregates, 3 dimer, 9 fractals, 10 nanoparticles, 2 well-engineered, 7 plasmon, 1 polarizability, 5 transition metals, 6 Electromagnetic Mechanism of SERS George C. Schatz, Matthew A. Young, and Richard P. edu 1 Introduction Surface-enhanced Raman spectroscopy (SERS) was originally discovered in the 1970s [1, 2] where it was found that submonolayers of small nonresonant organic molecules, such as pyridine, when adsorbed onto the surface of silver nanoparticles (and a few other metals such as copper and gold) would exhibit greatly enhanced Raman intensities (enhancements of 106 ).

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