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Rapid Nondestructive On-Site Screening of Methylamphetamine Seizures by Attenuated Total Reflection Fourier Transform Infrared Spectroscopy

机译:衰减全反射傅里叶变换红外光谱法快速无损现场筛选甲基苯丙胺

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摘要

The identification and quantification of illicit substances in the field is often desirable. Fourier transform infrared spectroscopy (FT-IR) has both qualitative and quantitative capabilities and field portable instruments are commercially available. Transmission infrared spectra of mixtures containing ephedrine hydrochloride, glucose, and caffeine and attenuated total reflection (ATR) infrared spectra of mixtures composed of methylamphetamine hydrochloride, glucose, and caffeine were used to develop principal component regression (PCR) calibration models. The root mean sum of errors of predictions (RMSEP) of all individual components in a mixture from a single measurement was <6percent w/w, which reduced to approx3percent w/w when triplicates were averaged. Sample mixing and grinding are essential to minimize the effect of heterogeneity, as deviations of up to 20percent w/w were observed for single measurements of unground samples. Poor predictions of the components in a mixture occurred when samples were "contaminated" with substances not present in the calibration set, as would be expected. When only a single analyte (drug) was targeted, using a calibration set that contained both contaminated and uncontaminated samples, an RMSEP of approx4percent w/w was achieved. The results demonstrate that ATR-FT-IR has the potential to quantify methylamphetamine samples, and possibly other licit or illicit substances, in at-seizure and on-site scenarios.
机译:通常希望在现场对非法物质进行鉴定和量化。傅立叶变换红外光谱(FT-IR)具有定性和定量功能,现场便携式仪器可商购获得。含有麻黄碱盐酸盐,葡萄糖和咖啡因的混合物的透射红外光谱以及由盐酸甲基苯丙胺,葡萄糖和咖啡因组成的混合物的衰减全反射(ATR)红外光谱用于建立主成分回归(PCR)校准模型。一次测量中混合物中所有单个成分的预测误差的均方根(RMSEP)小于6%w / w,当一式三份取平均值时,该误差降低到约3%w / w。样品混合和研磨对于最小化异质性影响至关重要,因为对未研磨样品的单次测量观察到的偏差高达20%w / w。如预期的那样,当样品被校准集中不存在的物质“污染”时,对混合物中各成分的预测就很差。当仅针对单一分析物(药物)作为目标物时,使用同时包含污染和未污染样品的校准套件,可获得约4%w / w的RMSEP。结果表明,ATR-FT-IR在缉获和现场情况下具有量化甲基苯丙胺样品以及可能的其他合法或非法物质的潜力。

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