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Browsing by Author "Gundrum, Lars"

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    Challenge of false alarms in nitroaromatic explosive detection-a detection device based on surface-enhanced Raman spectroscopy
    (Optical Soc Amer, 2010)
    Wackerbarth, Hainer
    ;
    Gundrum, Lars
    ;
    Salb, Christian
    ;
    Christou, Konstantin
    ;
    Vioel, Wolfgang
    A challenge in the detection of explosives is the differentiation between explosives and contaminants. Synthetic musk-containing perfumes can cause false alarms, as these perfumes are nitroaromatic compounds, which can be mistaken for trinitro toluene (TNT) by some detectors. We present a detection principle based on surface-enhanced Raman scattering (SERS). A stream of the airborne compounds is focused and resublimated on a cooled nanostructured gold surface. We recorded high-resolution SERS spectra of TNT, musk xylene, and musk ketone. The nitroaromatic compounds can be identified unambiguously by their SERS spectra. Even the dominant bands containing nitro-group scissoring and symmetric stretching modes are significantly shifted by the difference in molecular structure. (C) 2010 Optical Society of America
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    Detection of explosives based on surface-enhanced Raman spectroscopy
    (Optical Soc Amer, 2010)
    Wackerbarth, Hainer
    ;
    Salb, Christian
    ;
    Gundrum, Lars
    ;
    Niederkrueger, Matthias
    ;
    Christou, Konstantin
    ;
    Beushausen, Volker
    ;
    Vioel, Wolfgang
    In this study we present a device based on surface-enhanced Raman scattering (SERS) for the detection of airborne explosives. The explosives are resublimated on a cooled nanostructured gold substrate. The explosives trinitrotoluene (TNT) and triacetone triperoxide (TATP) are used. The SERS spectrum of the explosives is analyzed. Thus, TNT is deposited from an acetonitrile solution on the gold substrate. In the case of TATP, first the bulk TATP Raman spectrum was recorded and compared with the SERS spectrum, generated by deposition out of the gas phase. The frequencies of the SERS spectrum are hardly shifted compared to the spectrum of bulk TATP. The influence of the nanostructured gold substrate temperature on the signals of TATP was studied. A decrease in temperature up to 200 K increased the intensities of the TATP bands in the SERS spectrum; below 200 K, the TATP fingerprint disappeared. (C) 2010 Optical Society of America

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