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Spaghetti-like Surface Makes Stronger SERS Sensor

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ZURICH & LIVERMORE, Calif., Aug. 30, 2013 — Spaghetti-like arrays of gold-coated metallic carbon nanotubes can amplify the signals of surface-enhanced Raman spectroscopy (SERS) enough to perform analyses that are more reliable, sensitive and cost-effective. Previously the detection limit of common SERS systems was in the nanomolar range (one billionth of a mole), providing adequate signal strength in isolated cases only, and yielding results with low reproducibility. But a new sensor developed jointly by ETH Zurich and the Lawrence Livermore National Laboratory (LLNL) uses plasmonics to massively amplify the signals of...Read full article

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    Published: August 2013
    Glossary
    nano
    An SI prefix meaning one billionth (10-9). Nano can also be used to indicate the study of atoms, molecules and other structures and particles on the nanometer scale. Nano-optics (also referred to as nanophotonics), for example, is the study of how light and light-matter interactions behave on the nanometer scale. See nanophotonics.
    surface-enhanced raman spectroscopy
    Surface-enhanced Raman spectroscopy (SERS) is an analytical technique that combines the principles of Raman spectroscopy with the enhancement provided by nanostructured metallic surfaces. Raman spectroscopy is a method used to study vibrational, rotational, and other low-frequency modes in a system by measuring the inelastic scattering of monochromatic light, typically from a laser source. SERS enhances the Raman signal by many orders of magnitude, enabling the detection and identification of...
    Ali AltunAmericasBasic ScienceBiophotonicscarbon nanotubesdefenseETH ZurichEuropeHyung Gy u ParkImagingLawrence Livermore National LaboratoryLLNLnanoplasmonic sensorRaman-scattered lightResearch & TechnologySensors & DetectorsSERSsurface-enhanced Raman spectroscopyTiziana Bond

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