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Vapor-Phase Infrared Laser Spectroscopy: From Gas Sensing to Forensic Urinalysis

机译:气相红外激光光谱:从气体传感到法医尿液分析

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Numerous gas-sensing devices are based on infrared laser spectroscopy. In this paper, the technique is further developed and, for the first time, applied to forensic urinalysis. For this purpose, a difference frequency generation laser was coupled to an in-house-built, high-temperature multipass cell (HTMC). The continuous tuning range of the laser was extended to 329 cm~(-1) in the fingerprint C-H stretching region between 3 and 4 (mu)m. The HTMC is a long-path absorption cell designed to withstand organic samples in the vapor phase (Bartlome, R.; Baer, M.; Sigrist, M. W. Rev. Sci. Instrum. 2007, 78, 013110). Quantitative measurements were taken on pure ephedrine and pseudoephedrine vapors. Despite featuring similarities, the vapor-phase infrared spectra of these diastereoisomers are clearly distinguishable with respect to a vibrational band centered at 2970.5 and 2980.1 cm~(-1), respectively. Ephedrine-positive and pseudoephedrine-positive urine samples were prepared by means of liquid-liquid extraction and directly evaporated in the HTMC without any preliminary chromatographic separation. When 10 or 20 mL of ephedrine-positive human urine is prepared, the detection limit of ephedrine, prohibited in sports as of 10 (mu)g/mL, is 50 or 25 (mu)g/mL, respectively. The laser spectrometer has room for much improvement; its potential is discussed with respect to doping agents detection.
机译:许多气体传感设备都是基于红外激光光谱仪的。在本文中,该技术得到了进一步发展,并且首次应用于法医尿液分析。为此,将差频产生激光器耦合到内置的高温多通道电池(HTMC)。在3至4μm之间的指纹C-H拉伸区域中,激光的连续调谐范围扩大到了329cm-1。 HTMC是设计用于承受气相中的有机样品的长程吸收池(Bartlome,R。; Baer,M。; Sigrist,M.W.Rev.Sci.Instrum.2007,78,013110)。对纯麻黄碱和伪麻黄碱蒸气进行了定量测量。尽管具有相似性,但这些非对映异构体的气相红外光谱相对于分别位于2970.5和2980.1 cm〜(-1)处的振动带可以清晰地区分。麻黄碱阳性和伪麻黄碱阳性尿液样品通过液-液萃取制备,并在HTMC中直接蒸发,无需任何初步色谱分离。当制备10或20 mL麻黄碱阳性人尿时,运动中禁止的麻黄碱检出限为10μg/ mL,分别为50或25μg/ mL。激光光谱仪有很大的改进空间。讨论了有关掺杂剂检测的潜力。

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