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首页> 外文期刊>Forensic science international >Differentiation of regioisomeric ring-substituted fluorophenethylamines with product ion spectrometry.
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Differentiation of regioisomeric ring-substituted fluorophenethylamines with product ion spectrometry.

机译:用产物离子光谱法区分区域异构环取代的氟苯乙胺。

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摘要

The electron ionization (EI) of aromatic ring-substituted isomers gives virtual identical mass spectra which seriously affects their analysis. Especially regioisomeric meta- and para-ring-substituted compounds cannot show any ortho-effect reactions making their differentiation by mass spectrometry impossible. Furthermore o-, m- and p-substituted compounds can only be separated insufficiently by chromatography due to their very similar retention that do not allow univocal identification. Product ion mass spectrometry has proved to be a useful tool to differentiate structurally closely related fluorophenethylamines even in the case of the meta- and para-isomers. A series of N-alkylated o-, m- and p-fluoroamphetamines and 1-(4-fluorophenyl)butan-2-amines have been synthesized in microscale and studied by product ion spectrometry. The combination of chemical ionization (CI) and product ion spectrometry of hydrogen fluoride loss ions [M+H-HF](+) allows a univocal differentiation of all studied fluoro-substituted phenethylamines without prior derivatization. This method with submicrogram detection limits provides great advantages for the differentiation between aromatic regioisomeric fluorophenethylamine designer drugs where other methods such as nuclear magnetic resonance (NMR) spectrometry lack sufficient sensitivity or might fail because complex mixtures have to be analyzed.
机译:芳香环取代的异构体的电子电离(EI)给出了几乎相同的质谱图,这严重影响了它们的分析。特别是区域异构的间位和对位取代的化合物不能显示任何邻位反应,因此无法通过质谱法进行区分。此外,由于邻,间和对取代的化合物的保留非常相似,因此无法进行明确的鉴定,因此只能通过色谱法充分分离。事实证明,即使在间位异构体和对位异构体的情况下,产物离子质谱分析也是区分结构密切相关的氟苯乙胺的有用工具。一系列的N-烷基化的邻,间和对氟苯丙胺和1-(4-氟苯基)丁-2-胺已经通过微型方法合成,并通过产物离子光谱法进行了研究。化学电离(CI)和氟化氢损失离子[M + H-HF](+)的产物离子光谱法的结合可实现所有研究的氟取代苯乙胺的明确区分,而无需事先衍生。这种具有亚微克检出限的方法为区分芳香族区域异构的氟苯乙胺设计药物提供了很大的优势,而其他方法(如核磁共振(NMR)光谱法)缺乏足够的灵敏度,或者由于必须分析复杂的混合物而可能会失败。

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