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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Assessment of silver and gold substrates for the detection of amphetamine sulfate by surface enhanced Raman scattering (SERS)
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Assessment of silver and gold substrates for the detection of amphetamine sulfate by surface enhanced Raman scattering (SERS)

机译:通过表面增强拉曼散射(SERS)评估用于检测硫酸苯丙胺的银和金底物

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摘要

Methods of detection of maphetamine sulfate using surface enhanced Raman scattering (SERS) from colloidal suspensions and vapour deposited films of both silver and gold are compared. Different aggregating agents are required to produce effective SERS from silver and gold colloidal suspensions. Gold colloid and vapour deposited gold films give weaker scattering than the equivalent silver substrates when high concentrations of drug are analysed but they also give lower detection limits, suggesting a smaller surface enhancement but stronger surface adsorption. A 10~(-5) mol dm~(-3) solution (the final concentration after addition of colloid was 10~(-6) mol dm~(-3)) of amphetamine sulfate was detected from gold colloid with an RSD of 5.4%. 25 #mu#l of the same solution could be detected on a roughened gold film. The intensities of the spectra varied across the film surface resulting in relatively high RSDs. The precision was improved by averaging the scattering from several points on the surface. An attempt to improve the detection limit and precision by concentrating a suspension of gold collid and amphetamine sulfate in aluminium wells did not give effective quantitation. Thus, positive identification and semi-quantitative estimation of amphetamine sulfate can be made quickly and easily using SERS from suspended gold colloid with the appropriate aggregating agents.
机译:比较了使用表面增强拉曼散射(SERS)从胶态悬浮液和银和金的气相沉积膜中检测硫酸Maphetamine的方法。需要不同的聚集剂以从银和金胶体悬浮液中产生有效的SERS。当分析高浓度的药物时,金胶体和气相沉积的金膜比等效的银底物散射更弱,但它们的检测限也较低,表明表面增强作用较小,但表面吸附力较强。从金胶体中检测到硫酸苯丙胺的10〜(-5)mol dm〜(-3)溶液(添加胶体后的终浓度为10〜(-6)mol dm〜(-3)),RSD为5.4%。在粗糙的金膜上可以检测到25#μl的相同溶液。光谱强度在整个薄膜表面上变化,从而导致相对较高的RSD。通过平均表面上几个点的散射可以提高精度。通过在铝井中浓缩金冲突物和硫酸苯丙胺的悬浮液来提高检测限和精度的尝试并未给出有效的定量方法。因此,使用悬浮金胶体中的SERS和适当的聚集剂可以快速,轻松地进行硫酸苯丙胺的阳性鉴定和半定量评估。

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