REDUCTION OF FLUORESCENCE INTERFERENCE IN RAMAN-SPECTROSCOPY VIA ANALYTE ADSORPTION ON GRAPHITIC CARBON

被引:113
作者
KAGAN, MR [1 ]
MCCREERY, RL [1 ]
机构
[1] OHIO STATE UNIV, DEPT CHEM, COLUMBUS, OH 43210 USA
关键词
D O I
10.1021/ac00095a008
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Raman spectra of normally fluorescent materials were obtained by quenching the fluorescence through adsorption on carbon surfaces. Energy transfer from the excited state to the carbon surface greatly reduced the fluorescence of rhodamine 6G and the near-IR laser dye IR125, and Raman spectra with high S/N were obtained from the adsorbed molecules. Strong resonance enhancement of Raman scattering was observed, and monolayer films of R6G were observed. R6G exhibited Langmuirian adsorption behavior, with saturation coverage occuring at similar to 0.5 mM in methanol. The technique was also successfully applied to bis(methylstyryl)benzene (BMB) and fluoranthene, which are less fluorescent but also much weaker scatterers. Since the laser wavelengths yielding resonance enhancement are in the same range as those producing fluorescence, adsorption to carbon permits elimination of fluorescence without loss of resonance enhancement. The porous graphite substrate has the added advantage of high microscopic surface area, low elastic background, and propensity to adsorb a wide range of organic materials. With care, it was possible to observe Raman features from monolayers of materials having cross sections comparable to that of benzene, such as the 1205 cm(-1) peak of BMB.
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页码:4159 / 4165
页数:7
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