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      Quantitative Measurements of Codeine and Fentanyl on a Surface-Enhanced Raman-Active Pad

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          Abstract

          The USA is in the midst of an opioid crisis that included over 60,000 overdose fatalities in 2017, mostly unintentional. This is due to excessive use of prescription opioids and the use of very strong synthetic opioids, such as fentanyl, mixed with illicit street drugs. The ability to rapidly determine if people or packages entering the country have or contain drugs could reduce their availability, and thereby decrease the use of illicit drugs. In an effort to address this problem, we have been investigating the ability of surface-enhanced Raman spectroscopy to detect trace amounts of opioids on clothing and packages. Here, we report the measurement of codeine and fentanyl at 100 ng/mL for 5 min on a pad impregnated with gold colloids, as well as a preliminary measurement of 500 pg of fentanyl on a glass surface using one of these pads. The calculated limit of detection for this measurement was 40 pg. This data strongly suggests that these pads, used with portable Raman analyzers, would be invaluable to airport security, drug raids, crime scenes, and forensic analysis.

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          Most cited references26

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          THE ADSORPTION OF GASES ON PLANE SURFACES OF GLASS, MICA AND PLATINUM.

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            Changes in Synthetic Opioid Involvement in Drug Overdose Deaths in the United States, 2010-2016

            This study uses National Vital Statistics System data to describe trends in synthetic opioid involvement in drug overdose deaths in the United States from 2010 to 2016.
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              Assessment of silver and gold substrates for the detection of amphetamine sulfate by surface enhanced Raman scattering (SERS).

              Methods of detection of amphetamine 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 microl 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 colloid 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.
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                Author and article information

                Journal
                Molecules
                Molecules
                molecules
                Molecules
                MDPI
                1420-3049
                16 July 2019
                July 2019
                : 24
                : 14
                : 2578
                Affiliations
                Real-Time Analyzers, Inc., Middletown, CT 06457, USA
                Author notes
                [* ]Correspondence: stu@ 123456rta.biz ; Tel.: +1-860-635-9800
                Article
                molecules-24-02578
                10.3390/molecules24142578
                6680930
                31315188
                01052acd-d882-4f33-9d6d-edcc7806d3ae
                © 2019 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 17 June 2019
                : 14 July 2019
                Categories
                Article

                sers,raman,opioid detection,codeine,fentanyl,forensics
                sers, raman, opioid detection, codeine, fentanyl, forensics

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