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F-19 and H-1 quantitative-NMR spectroscopic analysis of fluorinated third-generation synthetic cannabinoids

机译:氟化第三代合成大麻素的F-19和H-1定量-NMR光谱分析

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Quantitative nuclear magnetic resonance (q-NMR) spectroscopy is a robust and reliable analytical method that possesses many advantages over conventional chromatographic techniques used in drug analysis. In this paper, the application of F-19 and H-1 NMR spectroscopy to quantify the amounts of synthetic cannabinoids (SCs), AM-694 and 5F-ADB, in herbal incense packages is discussed. These SC samples, seized in the South West of England in the summers of 2016 and 2017, are part of a growing illicit drug problem in the UK. For accurate quantitative analysis using F-19 observe, the data acquisition and the NMR processing parameters, such as spectral width, the centre point of the spectrum, nuclear Overhauser effect (NOE) enhancement and relaxation delay, are discussed together with cross-method validation. The reproducibility, simplicity, high speed, and non-destructive nature provide reliable quantitative analysis and, by using F-19 NMR, there is essentially no background interference. This quantitation is without resorting to the use of (often unavailable) standards as reference materials or to lengthy sample preparation, which are the norm in many analytical chromatographic techniques. The NMR methods allowed a direct comparison between H-1 and F-19 NMR, revealing the robustness and the effectiveness of F-19 NMR for application as a rapid (similar to 8 min), quantitative analytical method for fluorinated SCs which are now being seized with an increasing frequency and are highly toxic.
机译:定量核磁共振(Q-NMR)光谱是一种坚固且可靠的分析方法,具有与药物分析中使用的传统色谱技术的许多优点。本文讨论了讨论了F-19和H-1 NMR光谱法量化了草药香料包装中的合成大麻素(SCS),AM-694和5F-ADB的量。这些SC样本在2016年和2017年夏季的英格兰西南部扣押,是英国不断增长的非法毒品问题的一部分。对于使用F-19观察的准确定量分析,数据采集和NMR处理参数,例如光谱宽度,频谱的中心点,核传闻效应(NOE)增强和弛豫延迟,与跨方法验证一起讨论。重现性,简单性,高速和非破坏性自然提供可靠的定量分析,并且通过使用F-19 NMR,基本上没有背景干扰。这种定量不诉诸使用(通常是不可用)标准作为参考材料或冗长的样品制备,这是许多分析色谱技术中的规范。 NMR方法允许H-1和F-19 NMR之间的直接比较,揭示F-19 NMR的鲁棒性和效果作为快速(类似于8分钟),现在是氟化SC的定量分析方法频率越来越多地抓住并且具有高毒性。

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